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エビデンス登録簿

34件の限定BERM v17レコードと150件の拡張カタログエントリ、13以上の経路と490以上の査読済み研究にわたる。

カルシウム · 酸化還元 · ホルモン産生

一つの受容状態からホルモン産生へ至る複数の経路

カルシウム信号、酸化還元予備能、細胞維持は、コレステロール供給とStARを介するミトコンドリア輸送で合流します。BERMは測定された生物学的段階を通じて、電磁場実験と構成要素への介入を結びます。局所的な産生はホルモン利用可能性と組織応答につながります。

CaMKI–NUR77–StAR経路とRORα–BMAL1時計経路は、それぞれの証拠を保ちながらステロイド産生へ合流します。

Qin ほか (2018)iMartin ほか (2008)iGao ほか (2018)i
共通機構と研究を調べる

個々の研究から説明の全体像へ

エビデンスの全体像では、研究が測定した量と支持する段階を通じて研究同士を結び付けます。このレジスターには、詳しく確認するための個別記録と拡張カタログを残しています。

説明の水準
物理学 → 生物学 → 行動 → 文明は、モデル内での現象の位置を示します。説明の順序であり、確実性の順位ではありません。
結論の由来
明示された前提、その前提からの導出、測定された知見、複数の知見を結ぶ統合的推論を区別します。
研究が担う役割
測定されたつながり、研究デザイン、生物学的対象を確認します。その結果が構造、方向、大きさ、時間関係、別の条件への適用のどれに関わるかを読み取ります。

Two registries, two version numbers. The 34 bounded records follow the FieldState v2 measurement specification and attach to named nodes of the BERM v17 causal graph; each states its field class, directness, translation scope and calibration role. The 150 extended catalogue entries are the earlier A–F pathway bibliography, kept for source-level review and carried over to the same graph nodes where the source permits. "v2" is the version of the measurement specification; "v17" is the version of the model whose country predictions are published.

この登録簿の読み方

  1. 01フィールドシグネチャは背景ベクトル、角度、スペクトル、エンベロープなどの測定変数を支持できるが、ヒトの生殖能力への影響を立証するものではない。
  2. 02細胞または動物実験は、記載された条件内での機構的中間体または臓器エンドポイントを支持できるが、自動的にヒト集団の推定値となるわけではない。
  3. 03レビューは文献群を特定する。集団のタイミング結果は、対応するFieldState、エンドポイント、交絡因子の制御がない限り記述的である。
  4. 04以下のレコードはいずれもTFR係数ではない。国別TFR経路にはモデル仕様における個別のASFRおよび人口学的項が必要である。

エビデンスの読み方:標準 vs. BERM解釈

同じ研究が、どのバイアスを仮定するかによって反対の結論を支持できる。この表は、標準フレームワークとBERM補正フレームワークが同じエビデンスタイプをどう読むかを示す。

標準BERM弱い場→効果なし弱い場→膜で増幅用量反応なし→メカニズムなしウィンドウ効果→共鳴混在する結果→結論なし非制御モデレーター→予測可能

01研究がEMFの有意な効果を見出さない

標準的解釈

テストされたレベルでEMFは安全。生物学的メカニズムなし。

BERM解釈

対照群が汚染されている(実験室ベースラインバイアス)。減衰バイアスが見かけの効果を低減。真のゼロ曝露対照がなければゼロ結果は予想される。

02研究が高SARでのみEMF効果を発見

標準的解釈

効果は熱的。ICNIRPの閾値を確認。

BERM解釈

用量反応曲線にウィンドウ効果がある可能性(Adey/Blackman)。高SARでの効果は低SARでの効果を除外しない — 非単調応答はRPMが予測する。

03WHOの系統的レビューが確実性を「中程度」と評価

標準的解釈

エビデンスは中程度。さらなるRCTが必要。

BERM解釈

WHOの方法論は見かけの効果をすべて減衰させる15以上の特定されたバイアスの影響を受ける。バイアスのあるフレームワークでの「中程度」は、バイアス補正フレームワークでの「高い」に相当する可能性がある。

04GDPがEMFプロキシよりTFRとよく相関

標準的解釈

GDP/発展が真の要因。EMFは発展のプロキシ。

BERM解釈

GDPは「悪い対照」(Pearl 2009):電化がGDPとEMFの両方を引き起こす。GDPの制御は関心のある因果効果を除去する(含有メディエーターバイアス)。

05研究が正のEMF効果を示す(例:ROS増加)

標準的解釈

興味深いが追試が必要。効果量は小さい可能性。

BERM解釈

効果量は実験室ベースラインバイアスにより過小評価されている。非曝露ベースラインに対する真の効果は報告値より大きい。

06RPMはテレコム周波数での効果を説明できない

標準的解釈

CRY/RPM経路は携帯電話に無関係。

BERM解釈

RF搬送波については正しい。しかしテレコム信号はRPMの共鳴範囲内のELF変調(GSM 217 Hz)を含む。RPMは搬送波ではなく変調エンベロープに応答する。電場効果は経路A(VGIC)を介する。

07TFR予測の信頼区間を超えた

標準的解釈

モデルは間違い。予測は失敗した。

BERM解釈

3つの可能性:(a)モデルの過大評価、(b)外因性補償(移民、IVF、政策)、(c)CIが狭すぎる。各々に識別テストが存在する。

真の効果100%仮定した参照状態との比較1234515以上の特定されたバイアスが観察効果を減衰観察値~20-40%同じ研究→仮定するバイアスモデルにより異なる結論
  • 1ラボベースライン
  • 2対照汚染
  • 3SAR閾値
  • 4出版バイアス
  • 5メディエーター調整

標準的解釈

  • ゼロ結果=効果なし
  • 高SARのみ=熱的
  • GDP > EMFプロキシ
  • 線形用量反応
vs

BERM解釈

  • 汚染された対照群
  • ウィンドウ効果(Adey/Blackman)
  • GDP=悪い対照(Pearl 2009)
  • 非単調応答

Why directional attenuation requires a second model

Several identified design and interpretation mechanisms can move an estimated EMF effect toward zero: exposure misclassification, contaminated baselines, mediator adjustment, mismatched windows and publication or model-selection rules. Their joint direction does not by itself prove a cognitive cause. It does create a separate explanatory target. BERM composes limited access to causal antecedents, motivated reasoning and omitted-variable structure into a testable account of why downstream narratives can be preferred to an unmeasured biological state. [L*]

The account predicts two discriminating results: evidence thresholds should change when identical results receive different causal framings, and measured biological state should add out-of-sample information beyond reported reasons and socioeconomic controls. Failure of both predictions rejects this extension. [L*]

Read the derivation and test design

テーマ別エビデンスページ

個別の研究が機構的論拠に統合される詳細な分析。各ナラティブは発表された知見を統合するが、集団レベルの因果係数を確立するものはない。

複合曝露

避妊薬、衣服、携帯電話の電磁場:受容状態、素材による伝達、共通の生物学的経路。

治療機器のパラドックス

26のFDA承認非熱的EMF機器 vs. ICNIRPの「効果なし」仮定。EMF規制の中核にある論理的矛盾。

薬理学的エビデンス

定義した介入でチャネル、Ca、時計、修復を区別する。臨床効果と電磁場固有の比較は別の証拠として保つ。

乳児の脆弱性とSIDS

共鳴閾値:Q因子物理学(GABA興奮性→非減衰振動子)、日本/香港の三重保護パラドックス、8つの薬理学的経路、神経発達影響スペクトル、12の予測。

神経学的スペクトル:てんかん、片頭痛、群発頭痛

1つのQ因子メカニズム、4つの神経学的疾患:SIDS、てんかん/SUDEP、片頭痛(CSD)、群発頭痛。Lopez-Martin検証、薬理学的クロスマップ、サイロシビン・トリプタミンリセット。

証拠連鎖:光子→集団

直接構成要素証拠、構成された収束、未解決の橋渡しを分けるスケール横断監査。提案フィードバック網は検証可能だが、完全に検証済みの単一機構ではない。

収束するBERMパターン

7つの資料横断的統合により、独立した方法が同じ内分泌、CRY、Vmem、カルシウム、mTOR、感受性の制御点に収束することを示す。

重金属 × EMFシナジー

Cd²⁺はCav3.1を透過、Pb²⁺はCaMでCa²⁺を模倣、MeHgはT型電流を増加。松果体石灰化(PGC)が収束メカニズム。5つの金属、1つのVGCC進入経路。

Klimentidisのパラドックス

種間肥満を説明する3つのCa²⁺メカニズム

トリプルストライク:収束的破壊

3つの三重打撃 — テストステロン、生殖能力、認知がそれぞれ3つの独立した経路で同時に攻撃される。1つの上流メカニズムによる収束的破壊。

Walkerチェーン:睡眠→T→崩壊

EMFから睡眠を介したテストステロン低下への完全な因果連鎖が閉じた。7つの検証済み分岐が自己増幅ループを形成。

腸脳軸:第二のバリアが崩壊

概日リズム障害→Per2↓→腸管バリア↓→LPS→神経炎症。腸管バリアはBBBと同じタイトジャンクションタンパク質を使用。

IFチャネル:照明とディスプレイの移行

LEDスイッチモード電源、精子形成との関連、VDT先例。見過ごされた中間周波数チャネル。

疾病カスケード:イオンチャネル収束

イオン階層、皮膚電池、ADHD校正、1つのイオンチャネルモデルに追跡された8つの疾患。

血液脳関門と神経変性

BBBタイトジャンクション障害、アルツハイマーのカルシウム上流仮説、病院EMF仮説。

概日リズム障害、睡眠、回復

メラトニンブリッジ、媒介因子としての睡眠不足、回復ウィンドウの消失、行動抑制。

集団・疫学的エビデンス

COVID封鎖の自然実験、電化境界、Kaiser Permanenteシリーズ、携帯電話パラドックス。

ヒトの磁気受容とCRY経路

CRY/RPM磁気受容、パルス共鳴、メラトニンPRISMAレビュー、差異的感受性。

生態学的・センチネルエビデンス

分類群を超えた電気生態学、気象レーダーの野生生物への影響、そして普遍的な植物CRYメカニズム——マスティング同期からレタスの開花まで。BERMメカニズムの種間検証。

北部パッケージ

3つの共選択形質 — 青い目、乳糖耐性、高地磁気緯度 — が1つの分子(CRY)を最適化した方法。ビタミンDは2/3を説明、CRYは3/3を説明。

栄養によるCRY調節

B2、オメガ脂肪酸、断食ダイナミクスがクリプトクロム機能をどう制御するか。6つのエビデンスカード、3つの予測。

進化的起源:北方パッケージ

青い目、乳糖耐性、牧畜の共選択がEMFに最も感受性の高い集団をどう作ったか。5つのχスケール、6つの集団プロファイル、5つの予測。

自然対照群:9つの低EMFコミュニティ

前工業化および技術拒否集団の体系的比較。Tsimane→Moseten用量反応勾配、近視5段階勾配、11/16疾病カスケード確認。

歴史的収束

647年にわたる11人の独立した観察者が同じ文明衰退パターンに収束。イブン・ハルドゥーン(1377)からシャナ・スワン(2021)まで、BERMは彼らの観察に生物学的メカニズムを提供。

再現性危機の解決

EMF生物学がなぜ不一致に見えるか、Blackmanの5つの交絡因子、50年の矛盾する結果を解決する5パラメータ標準。

技術固有の曝露

電力網からStarlinkまで14の技術プロファイル。ELFプライミング仮説、超加法性モデル、時間的相関、なぜ2012年。

BERMプロトタイプとしての自閉症

ASDは3つの独立検証済みBERMメカニズム — GABAスイッチ遅延、シナプス形成、KCC2抑制 — を単一の神経発達アウトカムに統合。

慢性疼痛の流行

ELFプライミングがα2δ-1発現を上方制御 — 主要な神経障害性疼痛メカニズム — 神経損傷なしに慢性疼痛を創出。

エピジェネティック遺産

EMFがDNAメチル化、ヒストン修飾、microRNAを変化 — 非曝露F3子孫に効果を伝達しうるメカニズム。

隠れた甲状腺

EMFが視床下部のDio2/Dio3脱ヨウ素酵素を減少。標準甲状腺検査は正常に見える — FT3/FT4比が隠れた欠乏を明らかにする。

ADHD:第二のプロトタイプ

ADHDは3つのBERMメカニズム — PFCでのDA欠損、Cav1.2による髄鞘化遅延、E/Iシフト — を ASD後の第二の神経発達プロトタイプに統合。

4つの神経変性疾患

アルツハイマー、MS、パーキンソン、ALSが各々Ca²⁺依存メカニズムで異なる細胞タイプを攻撃。同じカスケード、4つの表現型。

アレルギーの流行

マスト細胞脱顆粒はCa²⁺依存性。EMFがアレルギー有病率の劇的増加を説明する四重感作カスケードを創出。

ビタミンD:自然のチャネル遮断薬

ビタミンDがCACNA1C/1D mRNAを下方制御 — EMFが活性化するのと同じVGCC。第10のBERMモデレーターが個人のEMF感受性変動を説明。

生殖のアーク

受精から生後1年まで、すべての重要な生殖段階がCa²⁺チャネルに依存。ニフェジピン — Ca²⁺遮断薬 — が複数の段階で第一選択治療。

5つの天然Ca²⁺モジュレーター

ビタミンD、メラトニン、マグネシウム、リチウム、カフェイン — EMFが活性化するのと同じVGCCチャネルを調節する5つの内因性または食事由来物質。

アーミッシュ:欠けた対照群

オールドオーダーアーミッシュはほとんどの電気技術を拒否。彼らの疾病率は現代西洋集団におけるゼロEMF対照群への最も近い近似を提供。

反証:正直な評価

BERMと矛盾するように見える5つのエビデンスカテゴリと、各々に対するモデルの回答 — ゼロ結果からWHOレビューまで。

テストステロン:時間的順序と生殖カスケード

フィンランド、米国MMAS、イスラエルでT低下が後のTFR低下に先行。ホルモン・行動・受胎研究がカスケードを制約します。共通の因果的遅延は未推定です。

重ね合わせの破れ

172件の複合曝露研究はBERMの非加算性試験を動機づけるが、Lindgren幾何学や生物学的L2結合を単独で実証しない。

生殖ナビゲーション

精子の産生から受精まで9つのカルシウム依存段階 — すべてEMF脆弱で、CatSperが代替不可能なマスターチャネル、生物学的バックアップなし。

太陽生物学

太陽活動と生物学的影響を結ぶ1世紀の証拠 — そしてそれを説明するCRY/RPMメカニズム。

ISSの低磁場実験

BERMのクリプトクロムスピン感受性(χ_B)予測を意図せず検証する国際宇宙ステーション。概日リズム遅延、メラトニン低下、免疫抑制 — すべてCRY/RPMに収束。

宇宙天気と生物学

3つの宇宙天気現象 — シューマン共鳴、Pc1微小脈動、地磁気誘導電流 — がヘリオバイオロジーをCRY/RPMメカニズムに接続。

ラシャンプ磁場逆転

42,000年前に地球の磁場が通常の6%に崩壊 — その生態学的影響がBERMの磁気感受性予測を検証。

太陽周期と地磁気生物学:第11の収束線

2つの量を区別する必要がある。χ_geo(x)は制限されたL1幾何係数であり、測定場には未解決の正規化x=N(z)が必要である。χ_Bは導入L3のCRY/RPMスピン応答候補である。太陽周期観測が検証するのはχ_Bとその下流経路であり、χ_geoや未解決L0→L2演算子を直接検証しない。

主要な研究エビデンス

著者知見メカニズム
Randall1990/19937カ国で11年周期の出生率変動を検出集団エンドポイント
Skjærvø et al.2015前工業化ノルウェー(1676–1878年、N=8,662):太陽極大期生まれは5.2年短命寿命エンドポイント
Burch et al.1999地磁気擾乱 → メラトニン代謝物(6-OHMS)排泄の減少メラトニン抑制
Weydahl et al.2001メラトニン抑制効果は70°N(オーロラオーバル)で最強緯度勾配
Ferrari et al.2015ミツバチの帰巣損失が地磁気嵐日に2.7倍CRYナビゲーション
Selås2004r² = 0.84 相関:蛾の個体数 vs. 太陽黒点数生態学的エンドポイント
Chizhevsky19222,500件の歴史的大衆運動の80%が太陽極大期周辺に集中行動エンドポイント

統計的結果

バンドパス8–14年:r = +0.58(p < 0.0001)米国出生率、1960–2000サブウィンドウでr = +0.81

一次差分:Δ-SSN vs Δ-CBR r = +0.20(p = 0.032)ラグ0

モンテカルロ p = 0.997 — 予測整合的方向がランダム化検定で確認

方向反転1998年:r_前 = +0.21(1933–1997)、r_後 = −0.55(1998–2022)。符号変化はRF飽和遷移と一致。

Statistical visualizations

Periodogram — USA CBR 1909-202395% significance11.4 yr581114172000.250.50.751Period (years)Spectral power
Bandpass 8-14yr: CBR vs SSN (inverted)CBR (filtered)SSN (inv.)r = +0.58, p < 0.0001192019401960198020002020YearCBR (bandpass)
First-difference: ΔCBR vs ΔSSNR = -0.20, p = 0.032Negative slope confirmed-30-1501530-15015ΔSSN (sunspot change)ΔCBR (birth rate change)
Monte Carlo Null Distribution (N = 10,000)Observedr = 0.58p < 0.001-0.4-0.20.00.20.40.60150300450600Null correlation (r)Count
Direction Reversal at 19981933-19971998-2022r = +0.21r = -0.55Sign change coincides with RF-saturation transition
Era-specific Bandpass Correlation+0.421909-1960***+0.811960-1998***-0.551998-2023***-0.6-0.30.00.30.60.9Correlation (r)Era
TFR vs SSN — Reversal Prediction TestSC25 rampTFRSSN201520172019202120231.61.71.81.90306090120YearTFRSSN
Superposed Epoch: CBR around Solar MaxSolar maxDip at epoch 0Mean response95% CI shaded-4-2024-0.4-0.20.00.20.4Years from solar maximumCBR anomaly (z-score)
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SAMA:自然の対照実験

南大西洋磁気異常(SAMA)は、地球の磁場が約24 µT — 通常の約50 µTのおよそ半分 — の領域である。この自然に弱化した磁場が地磁気幾何学の対照実験を生み出す。

ESS 2026分析:ほとんどの緯度で成立する太陽風–暴力相関が、ブラジルとウルグアイでは逆転する — まさにSAMA下の集団である。地磁気幾何学が変化するところで、生物学的応答が反転する。

北方パッケージ:3つの形質、1つの分子標的

北欧集団で共選択された3つの形質が単一の分子標的 — クリプトクロム(CRY)に収束する:

  1. 1. 虹彩色素沈着 → 測定された網膜光量 → χ_光学(入力は透過倍率ではなく光量そのもの)
  2. 2. 乳糖耐性 → B2/FAD食事供給 → CRYコファクター安定性 → χ_分子
  3. 3. 高地磁気緯度 → 強い環境磁場 → χ_地磁気

ビタミンD仮説は3形質中2つを説明する(明るい目と高緯度はUV吸収に選択される)。CRY仮説は3つすべてを説明する — 乳糖耐性と目の色の異常な連関を含めて。

深層時間の確認:年輪年代学

太陽周期は現代の現象ではない。年輪記録が地質時間にわたるその連続的作動を確認する:

  • Luthardt & Rößler 2018:2億9千万年前の石化林が10.62 ± 0.08年の成長周期を示す — ペルム紀の木に太陽周期性が保存。
  • Brehm et al. 2021:1,000年間の連続¹⁴C年輪データが宇宙線生成同位体生成の太陽変調を独立に確認。
  • Nature Communications 2025:紀元前1千年紀の確認が連続記録を拡張し、古代と現代の太陽周期の間の空白を埋める。

BERMのχ_B経路が応答する生物学的時計は、少なくとも2億9千万年間途切れることなく動いてきた。

植物は同じ分子を通じてEMFに応答する

同じ分子(CRY)、同じ補因子(FAD)、同じメカニズム(RPM)が植物(開花)と動物(メラトニン → HPG軸)の生殖を制御する。植物クリプトクロム研究はラジカルペア・メカニズムの最も純粋なテストを提供する — 植物は自らFADを合成するため、食事性B2が交絡因子にならない。

植物CRY研究エビデンス

AuthorsYearFindingMechanism
Ahmad et al.20207 MHz RFがシロイヌナズナのCRY1応答を低下 — 植物クリプトクロムにおけるRPMフィンガープリントRPM直接テスト
Xu et al.2014500 µT静磁場がシロイヌナズナのCRYリン酸化を促進CRY活性化
Xu et al.2015ほぼゼロ磁場がCRY経路を介して開花を抑制CRY依存性開花
Agliassa et al.2018地磁気がシロイヌナズナのCRY依存性シグナル伝達を調節CRYシグナル伝達
PMC100055102023Wi-Fi周波数(2.4 GHz)がレタスの開花を加速RF → 開花
Ecological Indicators2023868 MHz RF曝露が10種の野生植物の成長と繁殖に影響RF → 繁殖
Haggerty2010基地局からのRFバックグラウンドが近隣のアスペン実生の衰退と関連RF → 成長

B2/FAD非対称性:なぜ植物がよりクリーンなテストか

Plants

植物は自らB2を合成 → FAD供給は内因性 → CRY機能はRF撹乱のみに依存 → Ahmad 2020の「比較的軽微な」効果は純粋なRPMテスト

Animals

動物は食事性B2を必要 → CRY機能はRFとB2状態の両方に依存 → 二重脆弱性(RFがラジカルペアを撹乱 + B2欠乏が補因子を枯渇)

マスティング:2,000kmにわたる同期した繁殖

マスティング — 森林樹木の同期的大量結実 — は生態学で最も印象的な協調現象の一つである。大陸規模の距離にわたる樹木が同じ年に豊作を生み、他の年にはほぼゼロとなる。同期信号は2,000 km以上で同一に検出可能でなければならない。

BERM

CRY2は光周期、温度、そして地磁気を同時に読み取る。この3つの信号のうち、地磁気のみが2,000 kmスケールで事実上同一である — 光周期は緯度で変化し、温度は局所的に変化する。BERMは、CRY2を介した同期の地磁気成分が増大するRFバックグラウンドにより撹乱され、マスティングのコヒーレンスが弱まると予測する。

マスティング研究エビデンス

AuthorsYearFindingMechanism
Nature Plants2024夏至が「天体のスターティングガン」として機能 — 光周期信号がヨーロッパブナで2,000 kmにわたる同期マスティングを誘発同期信号
Bogdziewicz et al.2021ヨーロッパの森林でマスティング同期が弱まっている — 気候変動に帰因されるが、BERM代替案:RFバックグラウンドの増大がCRY2の地磁気感知を撹乱同期の喪失
Ascoli et al. (Nature Comms)2017NAOテレコネクションがマスティングと相関 — しかし関係は非定常的(時間とともに変化)、追加変数を示唆非定常相関

CRY2がマスティング同期のために光周期 + 地磁気を統合するなら、人為的RFの増大は樹木を地磁気信号から徐々に切り離すはずである — まさにBogdziewicz 2021が記録する弱まる同期を予測する。

11の独立した研究分野

BERMの機構的経路は、11の相互に独立した研究分野に基づいている。単一の分野では十分ではないが、同じ予測 — 電磁場の生物学的活性 — への収束は偶然では起こりにくい。

EMF生物活性BiophysicsEpidemiologyAnimalCellularClinicalSentinelGeneticsSleepMetabolicReproductiveSolar/Geomagnetic
01

腫瘍学

TTFields(FDA承認済み):100–300 kHz電場が細胞分裂を妨害。Novocure、臨床試験。

02

整形外科

PEMF骨刺激装置(FDA 1986):パルスEMFが骨治癒を促進。30年以上の臨床使用。

03

神経学

TMS、tDCS、VNS、DBS:非熱EMF機器がうつ病、てんかん、パーキンソン病を治療。160,000以上の埋込DBS装置。

04

量子生物学

ラジカルペア/CRYメカニズム(RPM):クリプトクロムによる鳥類の磁気受容。Sherrard 2018:パルスEMFがCRY依存的にROSを産生。

05

細胞生物学

IFO-VGIC(Panagopoulos 2025):電位依存性カルシウムチャネルによるイオン強制振動。閾値10⁻⁵ V/m。

06

非イオノトロピックVGCC

Trus et al. 2024(ヘブライ大学):VGCCがイオンフラックスなしで構造変化を通じて細胞内シグナリングを活性化。

07

昆虫学

ミツバチ-EMFデータ:Favre & Johansson 2025、Hallmann 2017、Thielens 2018。ミツバチのパイピング、昆虫減少、RF吸収。

08

寄生虫学

England 2023:ダニが宿主に静電的に引き寄せられる。静電場の生物学的活性。

09

幾何物理学

Lindgren 2025計量の前提。RPMとの87.5%代数対応は構造比較であり導出結合ではない。BERMの背景・角度依存ブリッジは検証すべきL2命題。

10

電気生態学

Bristol(Clarke、Robert、England、Mallinson):空中電気受容、ミツバチの電気コミュニケーション、人為的電場で着地−71%。植物CRY:Ahmad 2020 — 7 MHz RFがシロイヌナズナCRY1応答を減少(植物でのRPMフィンガープリント);Xu 2015 — 地磁気場がCRY2を通じて開花を制御;Bogdziewicz 2024 — マスティング同期が夏至を介して2,000 km(CRY2が候補同期装置)。

プロトコル固有の臨床アンカー:TheraBionic

一つのキャリア×包絡線×チャネル×臓器経路を制約するが、環境・生殖への移行は検証しない。

TheraBionic P1は2023年9月26日にFDA HDE H220001承認を受けた27.12 MHz振幅変調装置である。

装置

27.12 MHz AM-RF、腫瘍特異的周波数

チャネル

Cav3.2 (CACNA1H) T型VGCC

SAR

100–1,000× 以下

結果

14/41で6か月超の病勢安定

レベル

直接構成要素 — FDA HDE 2023 + 査読済みHCC機構

メカニズム

2019年のHCC研究は指定プロトコルでCav3.2依存性Ca²⁺流入を報告した。これは構成要素証拠であり、普遍的なBERM組織カーネルの証明ではない。

SAR比較

低SARプロトコルの生物活性は、このシステムに限定される。SAR比だけで別の波形、臓器、集団へ線量や符号を移せない。

カルシウムチャネル遮断薬禁忌

遮断薬に関するFDA表示は経路と整合するプロトコル制約であり、無作為化遮断薬実験ではない。

環境曝露、生殖組織、集団結果には別個の移行・校正試験が必要である。

テストステロン低下:国際エビデンス

年齢非依存の世俗的テストステロン低下が4大陸5か国で記録されている。パターンは一貫している:加齢、BMIトレンド、生活習慣の交絡因子とは独立に約1%/年の低下。BMI調整後に「低下なし」を見出した研究はメディエーターモデルと整合する:BMIは因果経路上にあり独立した交絡因子ではないため、調整すると真のシグナルが除去される。

研究N階層知見
米国Travison et al. 2007 (MMAS)i1,532−1.0%/yrBMI-independent集団レベルのT低下 1987–2004。年齢非依存:2002年の65歳は1987年の65歳より低いT。BMI調整済み — 直接経路のみを捕捉。
米国Mazur et al. 2013 (PLOS ONE)i991−0.95%/yrBMI-independent体重維持のUS Air Force退役軍人が20年間で117 ng/dL(19%)を喪失。肥満を十分な説明として除外 — メディエーター解釈の決定的証拠。
フィンランドPerheentupa et al. 2013i3,271−1.2%/yrBMI-independent37%のコホート依存T低下(1972–2002)。LHとFSHも後のコホートで低下。フィンランドのTFRは35年後に崩壊。
イスラエルChodick et al. 2020i102,334−1.02%/yrBMI-independent最大の単独研究:10.2万人、Maccabi Healthcare。「増加する肥満では説明困難。」イスラエルの高TFRにもかかわらずTが低下 — 閾値モデルのフェーズ1。
グローバルSanti et al. 2025 (meta-analysis)i1,064,891p = 0.033BMI-independent過去最大のメタ分析。TとLHの両方が年齢、BMI、測定法とは独立に低下。この集団にBMIの時間的トレンドなし。「HPG機能の進行中のリセット。」T + LH同時低下の初の確認。
デンマークAndersson et al. 2007i5,350BMI調整後ゼロMediator-consistentBMI調整後に低下が消失。BERM解釈:媒介経路がこの集団で支配的 — BMI調整が支配的シグナルを除去。メディエーターモデルと整合、矛盾ではない。
米国Nyante et al. 2012 (NHANES)i2,315低下なしMediator-consistentNHANES 1988–2004。低下なし。測定法変更+メディエーター除去を反映する可能性。Travisonと矛盾しない — 異なる集団、異なる測定法、異なる調整戦略。

因果分析

なぜ「ゼロ」結果は矛盾ではないか:BMIは交絡因子(独立した原因)またはメディエーター(因果経路上)のいずれかでありうる。EMFがBMI増加とT低下の両方を同時に引き起こすなら、BMIはメディエーターであり、その調整は真のシグナルを除去する。Mazur 2013がこれを実証:体重維持の男性がそれでもテストステロンの19%を喪失した。直接経路は全効果の約3分の2を占め、媒介経路(BMI経由)は約3分の1を占める。

平均 −1.0%/年USA (Travison)−1.0デンマーク (Andersson)−0.9Australia (Sartorius)−1.2Israel (Levine)−1.4フィンランド (Perheentupa)−1.0Iran (Darbandi)−0.8グローバル (Santi)−0.6−1.4−1.2−1.0−0.8−0.6%/年

テストステロンが現在の速度で低下し続けるなら、すべての国は最終的に亜不妊がTFRの拘束制約となる生物学的閾値を超える — 文化的または経済的要因にかかわらず。

メタボリックシンドローム:6つの収束経路

6つの独立したEMF → Ca²⁺経路が同時にエネルギー摂取を増加、エネルギー消費を減少、エネルギー貯蔵を増加させる。CaMKIIはすべての経路を接続する収束分子である。肥満は多因子性 — EMFは食事、運動、遺伝学だけでは説明できない残差を説明する1つの寄与因子である。

著者メカニズム知見レベル
Alshammari et al.i20221: 食欲RF-EMF → 視床下部破壊 → ヒトおよびラットで食物摂取↑E
Chen et al.i20161: 食欲ARCグリアのCa²⁺活性化 → AgRP/NPY↑ → 食物摂取↑(直接的Ca²⁺→食欲リンク)E
Maalouf et al.i20232: BAT900 MHz → BAT熱産生↓、ミトコンドリア活性↓(用量反応)E
French groupi20252: BAT5G (3.5 GHz) → PRDM16 −49%、C/EBPβ −32%(褐色脂肪分化マーカー)E
Selway et al.i20123: インスリンGLP-1がL型 VGCC Ca²⁺マイクロドメインを介してβ細胞でERKを活性化E
Matsui et al.i2011逆証ニフェジピン(L型遮断薬)→ 体重↓、PGC-1α↑(逆薬理学的試験)E
Haghjoo et al.i2022全て44研究:スクリーンタイム → 過体重 OR 1.273(用量反応)E
Klimentidis et al.i2010全て24集団、8種、>20,000頭の動物が全て体重增加 (p = 1.2×10⁻⁷)E

Alshammari et al. (2022)

1: 食欲

ENutrients

Chen et al. (2016)

1: 食欲

EeLife

Maalouf et al. (2023)

2: BAT

EIJMS

French group (2025)

2: BAT

EIJMS

Selway et al. (2012)

3: インスリン

EPLoS ONE

Matsui et al. (2011)

逆証

EHypertension Res

Haghjoo et al. (2022)

全て

EBMC Primary Care

Klimentidis et al. (2010)

全て

EProc R Soc B
Ca²⁺ROS体重インスリンBATT↓AlshammariChenMaaloufSelwayHaghjooKlimentidis直接間接未テスト

Klimentidisのパラドックス

24 集団 · 8 · p = 1.2 × 10⁻⁷

管理された食餌の実験用動物が数十年にわたり体重増加している。都市の野生ラットも太っている。ペットの犬や猫にも同じ傾向が見られる。これが24集団8種にわたり偶然に起こる確率はp = 1.2 × 10⁻⁷である。

食餌は排除されている(実験用動物)。運動は排除されている(実験用動物)。遺伝学は排除されている(近交系)。内分泌撹乱物質(BPA、フタル酸エステル)は可能性があるが、野生ラットと実験用動物とペットを同時には説明できない。これらすべての環境で増加した唯一の環境因子は電磁場曝露である。

Klimentidis et al.はEMFを研究していない。研究者たちは「まだ特定されていない因子」を示唆した。EMF解釈はBERMの導出であり、彼らのものではない。

EMF → Ca²⁺食欲↑BAT↓インスリンコルチゾール睡眠↓マイクロバイオームCaMKIIメタボリックシンドローム24集団、8種 — すべて体重増加 (p = 1.2×10⁻⁷)

CatSper:代替不可能なチャネル

9つのカルシウム依存段階が精子産生から受精までを網羅する。CatSperはすべての段階 — 受精能獲得、走流性、走温性、走化性、先体反応 — で必要であり、生物学的バックアップがない。テストされたどの種でもCatSperノックアウトは完全な雄性不妊を生じる。

CatSperは電位、pH、温度、プロゲステロンで調節される精子特異的チャネルである。BERMのEMF → CatSper段階は、指定フィールドプロトコルによる直接データが得られるまで未解決である。

CATSPER2欠損とNNC55-0396は必要性と介入点を確立するが、遮断薬とEMF曝露の同等性は確立しない(JCI 2024i; Rennhack et al. 2018i)。

CatSperはウニからヒトまで保存されている — 同じチャネルが6億年の進化にわたって受精を制御している。水生種(ウニ、サケ)は外部受精でCatSperを使用し、海底ケーブルのEMFが自然実験を提供する。

完全な9段階の生殖ナビゲーションチェーン

エビデンス階層

本ページはエビデンスを二つの階層で提示する。限定レコード(34件)はFieldState測定仕様スキーマに従い、各レコードがフィールドクラス、直接性、翻訳範囲、制限を記載する。拡張カタログ(150件のレガシーレコード)はソースレベルのレビュー用に広範な参考文献を保持するが、異なる緩い分類を使用する。二つの階層は構造も厳密さも比較できない。

限定レコード(FieldState測定仕様)

各レコードはフィールドクラス、直接性、翻訳範囲、制限を記載している。これらはBERM v17因果経路の主要エビデンスエントリである。

物理シグネチャ

Blackman CF et al. Bioelectromagnetics (1985)i

1985

Changing local geomagnetism shifted the ELF frequencies associated with calcium efflux.

研究デザイン
Controlled in-vitro experiment
研究対象
Chick brain tissue
因果ノード
FieldState vector / background geometry · Ca²⁺–mitochondrial redox intermediate
フィールドクラス
ELF electric field with altered local geomagnetic background
翻訳範囲
Supports background-dependent field-state measurement, not human reproduction or TFR.
制限
In-vitro avian tissue; Calcium-efflux endpoint; Historic protocol
校正役割: 構造のみ

Ritz T et al. Nature (2004)i

2004

Orientation disruption depended on the relative angle between RF and static background fields.

研究デザイン
Controlled animal orientation experiment
研究対象
European robins
因果ノード
FieldState vector / background geometry · RPM / cryptochrome–redox intermediate
フィールドクラス
Oscillating RF magnetic field at a controlled angle to geomagnetic background
翻訳範囲
Supports a vector/angle signature for radical-pair magnetoreception, not human reproduction.
制限
Avian navigation endpoint; No identified human receptor; No fertility endpoint
校正役割: 構造のみ

Chae K-S et al. PLOS ONE (2019)i

2019

Food-associated orientation in starved men tracked the modulated field direction under light below 500 nm, and reversed when the vertical component was inverted; blindfolded, longer-wavelength, antiparallel-current and female groups showed no significant orientation.

研究デザイン
Controlled human orientation experiment with wavelength and field-inversion controls
研究対象
Food-deprived human adults (20 men, 21 women)
因果ノード
FieldState vector / background geometry · RPM / cryptochrome–redox intermediate
フィールドクラス
Coil-modulated geomagnetic-strength static field under controlled illumination
翻訳範囲
Supports a wavelength- and inclination-dependent radical-pair receptor in humans; it does not supply an RF exposure-response, a melatonin route, or a fertility effect size.
制限
Small sample (n=41); No RF applied — receptor substrate, not disruption; Orientation behaviour rather than a reproductive endpoint; Significant in men only; sex difference may track glucose or motivation; Not replicated; Oct 2019 correction (PLOS ONE 14(10): e0223635) is a misplaced table caption, no data change
校正役割: 構造のみ

Shafik, Ibrahim & El-Sayed. Andrologia (1992)i

1992

Reported readings ranked 100% polyester above a 50:50 polyester/cotton blend; cotton had no detected reading in the stated setup.

研究デザイン
Human textile-interface measurement study
研究対象
Twenty-one healthy men wearing polyester, blend or cotton underpants
因果ノード
Static triboelectric material–skin / organism interface
フィールドクラス
Triboelectric textile–skin interface; historical physically underdetermined V/cm² reading
翻訳範囲
Supports a material-dependent human textile–skin static-interface state; the historically reported, physically underdetermined V/cm² cannot convert into Q, V/m or an organ field.
制限
V/cm² is not a standard potential, field or charge-density unit; Probe geometry/reference incompletely reported; No reproductive endpoint
校正役割: 構造のみ

Dincmen, Hauser & Gursoy. AATCC Journal of Research (2016)i

2016

Untreated polyester retained a large charge for over 2,000 seconds in the stated test; antistatic treatment reduced both magnitude and decay time.

研究デザイン
Controlled textile-material charge generation and dissipation experiment
研究対象
Untreated and antistatic-treated polyester and nylon fabrics
因果ノード
Static triboelectric material–skin / organism interface
フィールドクラス
Triboelectric charge generation, surface resistivity and charge-decay measurements
翻訳範囲
Supports material-treatment and relaxation-time variables in static-interface FieldState, not a skin or reproductive effect.
制限
Fabric material test; Specific treatment and climate conditions; No biological endpoint
校正役割: 構造のみ

機構的中間体

Usselman RJ et al. Scientific Reports (2016)i

2016

Field orientation changed radical-pair ROS yield and endothelial bioenergetic readouts.

研究デザイン
Controlled cell experiment
研究対象
Human endothelial cells and a radical-pair chemistry system
因果ノード
FieldState vector / background geometry · RPM / cryptochrome–redox intermediate · Ca²⁺–mitochondrial redox intermediate
フィールドクラス
1.4 MHz RF magnetic field with 50 microtesla static field and controlled orientation
翻訳範囲
Supports a geometry-sensitive ROS intermediate, not organ-specific fertility capacity.
制限
Cell culture and chemical model; Endothelial cells; Not a population dose
校正役割: 構造のみ

Majewska M et al. ACS Chemical Biology (2025)i

2025

Cry4a associated with lipid bilayers in an ordered manner controlled by membrane physical state.

研究デザイン
Protein–membrane experiment and molecular simulation
研究対象
European robin Cry4a and model lipid bilayers
因果ノード
RPM / cryptochrome–redox intermediate
フィールドクラス
Receptor geometry / membrane anchoring study
翻訳範囲
Supports modelling receptor orientation and membrane state, not a human cryptochrome fertility pathway.
制限
Avian protein; Model membrane; No applied exposure or reproductive endpoint
校正役割: 構造のみ

Zandieh A et al. Scientific Reports (2025)i

2025

Mitochondrial-potential and ROS responses varied with frequency, including 0.02 and 0.04 Hz conditions.

研究デザイン
Cell experiment with dynamical model
研究対象
Cancer cell lines
因果ノード
Envelope / beat PSD hypothesis · Ca²⁺–mitochondrial redox intermediate · Membrane-potential / mTOR intermediate
フィールドクラス
ELF magnetic fields, 0.01–5 Hz and 0–100 mT
翻訳範囲
Supports testing a state-dependent envelope/resonance feature, not RF network modulation or reproduction.
制限
Cancer cell systems; Includes high millitesla fields; No reproductive endpoint
校正役割: 構造のみ

Sherrard RM et al. PLOS Biology (2018)i

2018

Field-associated ROS and response-gene changes required cryptochrome in the tested cell systems.

研究デザイン
Controlled cell experiment with cryptochrome loss-of-function
研究対象
Human HEK293 cells and mouse embryonic fibroblasts
因果ノード
RPM / cryptochrome–redox intermediate · Ca²⁺–mitochondrial redox intermediate
フィールドクラス
Weak pulsed electromagnetic fields
翻訳範囲
Informs a CRY-to-ROS bridge in cells, not device-specific gonadal dose or fertility effect size.
制限
Cell models; PEMF rather than consumer RF; No reproductive endpoint
校正役割: 構造のみ

Cao H et al. International Journal of Environmental Research and Public Health (2015)i

2015

Melatonin and antioxidant rhythm measures varied by RF exposure time in the protocol.

研究デザイン
Controlled animal experiment
研究対象
Rats
因果ノード
RPM / cryptochrome–redox intermediate · Melatonin / circadian-redox mediator · HPA–HPG endocrine intermediate · Oocyte redox / mitochondrial state
フィールドクラス
1.8 GHz RF exposure at six time-of-day conditions
翻訳範囲
Supports a circadian/redox context in FieldState, not human conception or birth rates.
制限
Rat model; Single RF protocol; Hormone and antioxidant endpoints
校正役割: 構造のみ

Lochhead JJ et al. Journal of Cerebral Blood Flow and Metabolism (2010)i

2010

Oxidative stress increased BBB permeability and altered occludin localization; antioxidant treatment attenuated the change.

研究デザイン
Controlled animal barrier experiment
研究対象
Rat blood-brain barrier
因果ノード
Ca²⁺–mitochondrial redox intermediate · Blood–brain barrier
フィールドクラス
Oxidative-stress manipulation, not EMF exposure
翻訳範囲
Supports a redox-to-tight-junction bridge for the BBB branch; it is not direct EMF evidence.
制限
Non-EMF upstream manipulation; BBB rather than reproductive barrier; Animal model
校正役割: 構造のみ

Chakraborty P et al. Reproductive Toxicology (2020)i

2020

Oxidative stress accompanied lower BTB junction proteins and adverse sperm endpoints in the model.

研究デザイン
Controlled animal mechanism experiment
研究対象
Rat testis and blood-testis barrier
因果ノード
Ca²⁺–mitochondrial redox intermediate · Blood–testis barrier · Sperm output, function and DNA integrity
フィールドクラス
Oxidative-stress manipulation, not EMF exposure
翻訳範囲
Supports the redox-to-BTB-to-sperm bridge, not direct EMF evidence.
制限
Non-EMF upstream manipulation; Animal model; No human fecundability mapping
校正役割: 構造のみ

Liu Y et al. Proceedings of the National Academy of Sciences (2014)i

2014

Ovarian Bmal1 disruption impaired progesterone support and implantation in the experimental system.

研究デザイン
Cell-specific genetic animal experiment
研究対象
Mouse ovarian steroidogenic cells
因果ノード
RPM / cryptochrome–redox intermediate · HPA–HPG endocrine intermediate · Ovulatory clock · Luteal and implantation support
フィールドクラス
Downstream circadian mechanism, not EMF exposure
翻訳範囲
Supports the clock-to-steroidogenesis-to-implantation segment, not an EMF-to-Bmal1 effect size.
制限
Genetic mouse model; No EMF exposure; Implantation rather than population fertility
校正役割: 構造のみ

He C et al. International Journal of Molecular Sciences (2016)i

2016

Melatonin/redox manipulation changed mitochondrial and oxidative-damage markers and embryo-development measures.

研究デザイン
Mouse oocyte and IVF experiment
研究対象
Murine oocytes and embryo-development endpoints
因果ノード
Melatonin / circadian-redox mediator · Oocyte redox / mitochondrial state · Luteal and implantation support
フィールドクラス
Downstream redox/melatonin mechanism, not EMF exposure
翻訳範囲
Supports oocyte redox-resilience state, not direct EMF evidence or a human IVF prediction.
制限
Mouse oocytes; Manipulation is not EMF; No population fertility endpoint
校正役割: 構造のみ

Šofranková et al. Pathogens (2023)i

2023

Reported exposures produced sex-, intensity- and time-dependent neuropeptide/receptor transcript changes in tick synganglia.

研究デザイン
Controlled radiofrequency exposure and tick synganglion qRT-PCR experiment
研究対象
Adult male and female Ixodes ricinus under stated 900 MHz, 2 or 40 V/m exposure conditions
因果ノード
FieldState vector / background geometry · Species-specific field encounter, sensing, physiology and dispersal
フィールドクラス
900 MHz polarized, unmodulated RF electric-field exposure
翻訳範囲
A separate tick RF-physiology branch, not static attachment, RF resistance, feeding fitness, population growth or a human coefficient.
制限
Adult laboratory tick system; Transcript rather than fitness endpoint; Exposure geometry and thermal control matter; No multigeneration outcome
校正役割: 構造のみ

生殖エンドポイント

Ayas B & Kocaman A. Human Reproduction / ESHRE 2021 (abstract)i

2021

The abstract reported lower epididymal sperm motility (47.62→34.19%) and intracellular Ca²⁺ (2.46→1.85), but no significant difference in mating score or live-birth rate. CatSper gene-expression analysis was pending.

研究デザイン
Controlled in-vivo rat experiment reported as a conference abstract
研究対象
50 male Wistar-Albino rats in five groups; 20 females for mating assessment
因果ノード
Ca²⁺–mitochondrial redox intermediate · Sperm output, function and DNA integrity
フィールドクラス
2100 MHz RF, 1 hour/day for 28 days; amlodipine intervention and controls
翻訳範囲
Rat sperm endpoints after repeated in-vivo exposure; not human gamete evidence, a selective CatSper intervention or an inferred earlier calcium pulse.
制限
Conference abstract, not full peer-reviewed paper; Rat experiment; no human gametes; Single frequency tested; Amlodipine is not CatSper-specific; Non-significant live-birth result is not an equivalence demonstration
校正役割: 構造のみ

De Iuliis GN et al. PLOS ONE (2009)i

2009

The exposure system linked increasing SAR with mitochondrial ROS, oxidative DNA damage, lower motility and vitality.

研究デザイン
Controlled in-vitro human sperm experiment
研究対象
Purified human spermatozoa
因果ノード
Ca²⁺–mitochondrial redox intermediate · Sperm output, function and DNA integrity
フィールドクラス
1.8 GHz RF-EMR, 0.4–27.5 W/kg SAR
翻訳範囲
Direct human gamete evidence, but not a population FieldState or TFR estimate.
制限
In-vitro sperm preparation; No BTB or whole-organ compensation; Different dose context
校正役割: 構造のみ

Yu G et al. Science of the Total Environment (2020)i

2020

Reported delayed sperm/reproductive changes and a Spock3–MMP2 blood-testis-barrier axis; Spock3 inhibition was a rescue arm.

研究デザイン
Controlled adult-rat local-exposure experiment with mechanistic rescue
研究対象
Adult rat testes
因果ノード
FieldState vector / background geometry · Blood–testis barrier · Male germline reserve · Sperm output, function and DNA integrity
フィールドクラス
Localized 4G smartphone RF exposure to the scrotal region
翻訳範囲
Supports a local BTB branch in the model structure, not human transfer or TFR calibration.
制限
Rat model; Specific local smartphone protocol; No human exposure-response calibration
校正役割: 構造のみ

Meena R et al. Electromagnetic Biology and Medicine (2014)i

2014

Reported redox, testosterone, sperm and DNA-fragmentation changes attenuated in the melatonin arm.

研究デザイン
Controlled animal experiment with melatonin intervention
研究対象
Wistar rat testes and semen endpoints
因果ノード
Ca²⁺–mitochondrial redox intermediate · Melatonin / circadian-redox mediator · Sperm output, function and DNA integrity · Male steroidogenesis
フィールドクラス
2.45 GHz microwave exposure, reported SAR 0.14 W/kg
翻訳範囲
Supports a redox-mediated testis branch and mediator test, not a human prevention recommendation or effect size.
制限
Rat model; Protocol-specific intervention; No human fertility endpoint
校正役割: 構造のみ

Ahmadi SS et al. Electronic Physician (2016)i

2016

Reported higher follicular atresia and ovarian/oocyte morphological changes after the protocol.

研究デザイン
Controlled developmental animal experiment
研究対象
Rat ovaries exposed during intrauterine and postnatal development
因果ノード
Membrane-potential / mTOR intermediate · Developmental bioelectric memory · Ovarian reserve · Oocyte redox / mitochondrial state
フィールドクラス
50 Hz magnetic-field exposure for 8 or 13 weeks
翻訳範囲
Supports a developmental ovarian-reserve state, not a human reserve-decline estimate.
制限
Rat model; Histological endpoints; No human AMH/AFC or fertility calibration
校正役割: 構造のみ

Baldini GM et al. Toxics (2025)i

2025

Reported lower progressive motility in mobile-phone and Wi-Fi-repeater conditions than comparator conditions.

研究デザイン
Human-sperm in-vitro laboratory comparison
研究対象
Semen samples from 102 healthy males in an IVF laboratory
因果ノード
FieldState vector / background geometry · Ca²⁺–mitochondrial redox intermediate · Sperm output, function and DNA integrity
フィールドクラス
One-hour close-distance smartphone or 2.4/5 GHz Wi-Fi-repeater exposure versus laboratory comparators
翻訳範囲
Informs local-geometry measurement in a short-term human-sperm setting, not a personal-exposure cohort or TFR estimate.
制限
In-vitro semen exposure; Single laboratory and short duration; Comparator design does not establish population exposure-response
校正役割: 構造のみ

Calis P et al. Fetal and Pediatric Pathology (2021)i

2021

The exposed offspring group had fewer primordial and secondary follicles and higher atresia in the reported protocol.

研究デザイン
Prenatal controlled rat experiment
研究対象
Female rat offspring ovarian histology at postnatal day 42
因果ノード
FieldState vector / background geometry · Developmental bioelectric memory · Ovarian reserve · Oocyte redox / mitochondrial state
フィールドクラス
Smartphone RF exposure during pregnancy
翻訳範囲
Supports a developmental ovarian-reserve branch distinct from acute ovulation, not human reserve calibration.
制限
Rat model; Protocol is not measured human FieldState; Histology rather than adult fertility
校正役割: 構造のみ

Yousefi B et al. Reproductive Sciences (2025)i

2025

Primary animal study measured oogenesis, folliculogenesis and neonatal ovarian developmental/hormonal endpoints.

研究デザイン
Maternal-exposure neonatal-rat experiment
研究対象
Neonatal Wistar-rat ovaries after maternal phone exposure
因果ノード
FieldState vector / background geometry · Developmental bioelectric memory · Ovarian reserve · Oocyte redox / mitochondrial state
フィールドクラス
Maternal mobile-phone exposure during gestation
翻訳範囲
Adds a recent developmental female branch; it is a primary rat study, not a human review or direct TFR coefficient.
制限
Rat model; Maternal-device protocol; Neonatal endpoints need longitudinal human translation
校正役割: 構造のみ

Iolchiev BS et al. Agricultural Biology (2019)i

2019

Reported higher geomagnetic-activity periods alongside changes in ejaculate volume, motility, morphology and DNA fragmentation.

研究デザイン
Observational time-series study
研究対象
Ten Holstein bulls and repeated semen samples
因果ノード
FieldState vector / background geometry · Sperm output, function and DNA integrity
フィールドクラス
Natural geomagnetic-activity index
翻訳範囲
Natural-field sentinel for background-state hypotheses; it does not isolate geomagnetism or generalise to humans.
制限
Small animal sample; Observational design; Management and seasonality may confound
校正役割: 構造のみ

Shafik A. Contraception (1992)i

1992

Reported reversible azoospermia, seminiferous-tubule changes and static-interface readings; the paper itself proposed electrostatic and thermoregulatory mechanisms.

研究デザイン
Human longitudinal textile-sling experiment
研究対象
Fourteen adult men wearing a polyester scrotal sling for 12 months
因果ノード
Static triboelectric material–skin / organism interface · Sperm output, function and DNA integrity
フィールドクラス
Triboelectric textile–skin interface with altered scrotal geometry
翻訳範囲
Human endpoint anchor for a prolonged textile-interface configuration, not isolated static causality, general clothing effect or TFR coefficient.
制限
Small historical study; Static and thermoregulatory components co-occurred; No calibrated Q, V/m, dE/dt or organ transfer
校正役割: 構造のみ

生態学的エンドポイント

England, Lihou & Robert. Current Biology (2023)i

2023

Nymphs crossed short air gaps toward charged host-like targets; polarity independence supported induced polarization, and the modelled geometry exceeded 300 kV/m locally.

研究デザイン
Controlled arthropod electrostatic-attraction experiment with finite-element modelling
研究対象
Ixodes ricinus nymphs and host–vegetation geometries
因果ノード
Static triboelectric material–skin / organism interface · Species-specific field encounter, sensing, physiology and dispersal
フィールドクラス
Static host–vegetation air-gap electric fields and field gradients
翻訳範囲
Direct contact/attachment evidence for the tested tick and geometry, not RF/ELF resistance, population abundance or a human coefficient.
制限
Ixodes ricinus nymph system; Attachment rather than population endpoint; Each host/habitat geometry needs measurement
校正役割: 構造のみ

Colin et al. Journal of Insect Physiology (1992)i

1992

Charge sign altered mite movement; a negatively charged lure increased contact and climbing in the tested system.

研究デザイン
Controlled ectoparasite behavior experiment
研究対象
Varroa jacobsoni as named in the original study (now generally treated as V. destructor in this Apis mellifera pest context) and honey-bee-range charged lures
因果ノード
Static triboelectric material–skin / organism interface · Species-specific field encounter, sensing, physiology and dispersal
フィールドクラス
Static electrical charges matched to the reported host range
翻訳範囲
Supports a charge-sensitive parasite contact/behavior branch, not colony collapse, population growth or other-field resistance.
制限
Historical taxonomic name retained with modern interpretation; Laboratory lure; Contact behavior is not fitness or resistance
校正役割: 構造のみ

Mallinson, Woodburn & O'Reilly. iScience (2025)i

2025

AC and positive DC treatments reduced floral landings in the reported paired experiment; negative DC did not show a statistically significant effect.

研究デザイン
Paired field experiment with anthropogenic AC/DC electric-field treatments
研究対象
Honeybee floral landing behavior in urban meadows
因果ノード
Low-frequency electric-field waveform / polarity state · Species-specific field encounter, sensing, physiology and dispersal
フィールドクラス
Weak 50 Hz AC and DC aerial electric fields; transmission-line measurements
翻訳範囲
Component- and polarity-specific pollinator behavior evidence, not a colony-fitness, abundance or general EMF estimate.
制限
Single species/context; Landing behavior endpoint; Do not merge AC/DC E-field with RF or magnetic-field hypotheses
校正役割: 構造のみ

García-Robledo, Dierick & Manser. PNAS (2025)i

2025

Tested flower mites responded to modulated fields using front-leg sensory structures and bridged a gap to a hummingbird-beak analogue electrostatically.

研究デザイン
Controlled mite behavior, sensory-ablation and electrostatic-transport experiment
研究対象
Tropical hummingbird flower mites and host-like electric-field configurations
因果ノード
Static triboelectric material–skin / organism interface · Low-frequency electric-field waveform / polarity state · Species-specific field encounter, sensing, physiology and dispersal
フィールドクラス
Modulated and static electric fields with host-like charge and geometry
翻訳範囲
Electroreception-plus-transport evidence in a mite life cycle, not a general tick/mite response spectrum or selection estimate.
制限
Tropical flower-mite guild; Laboratory host analogue; No multigeneration population outcome
校正役割: 構造のみ

Morley & Robert. Current Biology (2018)i

2018

Atmospheric-scale electric fields elicited ballooning behavior and mechanically activated spider sensory hairs in the reported experiments.

研究デザイン
Controlled arthropod behavior and mechanosensory-hair experiment
研究対象
Ballooning spiders
因果ノード
Static triboelectric material–skin / organism interface · Species-specific field encounter, sensing, physiology and dispersal
フィールドクラス
Vertical atmospheric-scale static electric fields
翻訳範囲
Supports an electric-field-to-dispersal behavior branch, not landscape population expansion or built-infrastructure effects.
制限
Spider behavior system; Atmospheric field rather than textile interface; Behavior is not a population-growth estimate
校正役割: 構造のみ

系統的レビュー

Cordelli E et al. Environment International (2024)i

2024

Reported lower pregnancy rate (moderate certainty) and lower sperm count (low certainty), no litter-size effect (moderate certainty), and very-low certainty for several other pooled endpoints.

研究デザイン
WHO-commissioned systematic review and meta-analysis
研究対象
Non-human mammals and human sperm in vitro
因果ノード
Sperm output, function and DNA integrity · Male steroidogenesis · Couple conception / live-birth capacity
フィールドクラス
RF-EMF from 100 kHz to 300 GHz
翻訳範囲
Review-level context for male reproductive branches, not an individual human exposure study or TFR coefficient.
制限
Mostly non-human mammals and human sperm in vitro; Exposure relevance and thermal conditions vary; Pregnancy-rate analysis was later corrected and is sensitive to a high-SAR study
校正役割: コンテキストのみ

Cordelli E et al. Corrigendum, Environment International (2025)i

2025

Corrected the pregnancy-rate meta-analysis; the revised result is partly driven by a high-SAR study and becomes non-significant when that study is excluded.

研究デザイン
Correction to systematic-review meta-analysis
研究対象
Re-analysis of the 2024 review data
因果ノード
Sperm output, function and DNA integrity · Couple conception / live-birth capacity
フィールドクラス
RF-EMF evidence synthesis
翻訳範囲
Constrains interpretation of the 2024 review and must accompany it; it is not a population TFR result.
制限
Pooled-estimate stability concern; Mainly non-human/experimental evidence; No direct population dose-response
校正役割: コンテキストのみ

Naderi N et al. Reproductive Toxicology (2026)i

2026

Identified 88 eligible rodent studies across sperm, oxidative-stress, DNA, apoptosis, histopathology and hormone endpoints.

研究デザイン
Systematic review of rodent experiments
研究対象
Rat and mouse spermatogenesis/sperm studies
因果ノード
Ca²⁺–mitochondrial redox intermediate · Sperm output, function and DNA integrity · Male steroidogenesis
フィールドクラス
800–24,000 MHz RF-EMR; reported SAR 0.014–34 W/kg
翻訳範囲
Supports a multi-endpoint male branch and parameter-search agenda; heterogeneity prevents one biological coefficient.
制限
Rodent evidence only; Heterogeneous exposure/dosimetry reporting; No uniform causal interpretation or human TFR coefficient
校正役割: コンテキストのみ

集団記述データ

BERM reproducibility analysis using UN WPP 2024 ASFR and World Bank/ITU mobile subscriptions (2000–2023)i

2026

Reports an age-cohort contrast consistent with the developmental-memory premise while retaining mobile subscriptions as a timing proxy.

研究デザイン
Versioned reproducible descriptive cohort-proxy analysis
研究対象
Country-level WPP ASFR and World Bank/ITU mobile-subscription series
因果ノード
Couple conception / live-birth capacity · Age-specific fertility (ASFR) · Derived period TFR
フィールドクラス
Technology-adoption timing proxy, not physical FieldState
翻訳範囲
Tests a predicted age/cohort signature, not a causal EMF effect or FieldState-transfer coefficient.
制限
Ecological country-level analysis; Versioned scenario weights are not calibrated sensitivity estimates; Subscriptions are not an EMF dose; Development, policy, tempo and demand covary with adoption
校正役割: コンテキストのみ

以前の否定的知見の分類方法

以下の分類は、以前否定的と解釈された所見にBERM推論プロトコル(v1.0)を適用したものです。再分類は所見がBERMを支持することを意味しません。元のテストが弁別的でなかったか、対象とされた標的に対処していなかったことを意味します。主要分岐(パスウェイB / RPM / コホート効果)は弁別的テストによる経験的検証が未了です。

13 件の所見6 件は維持5 件は再分類2 内部改良0/13件が現在の経験的BERMに影響 · 5件の弁別的フォローアップテストを特定
分類
範囲

13/13件を表示 · CLASSIFICATION_TABLE v1.0

F01 Nokia-era Finland fertility rise

↻ Reclassified
Original
Falsification
Review
Does not discriminate models

BERM cumulative lag model predicts delayed onset; TFR decline began 2010

Discriminating test: In utero cohort tracking (2G-born vs 4G-born ASFR)

Affects: demographic claimsL-BERM: noEmpirical BERM: no

F02 Israel high TFR

↻ Reclassified
Original
Falsification
Review
Does not discriminate models

D-term (cultural demand) is explicit in architecture; internal gradient supports BERM

Discriminating test: Sperm quality comparison: secular Israeli vs Amish (same desired fertility, different EMF)

Affects: demographic claimsL-BERM: noEmpirical BERM: no

F03 Pre-mobile demographic transition

↻ Reclassified
Original
Falsification
Review
Straw man

BERM v6+ separates D-driven decline from Φ-driven; claims post-2000 acceleration only

Affects: nothing in the current modelL-BERM: noEmpirical BERM: no

F04 Nike-BBS monotonic dose-response

↻ Reclassified
Original
L1 χ_geo形状の反証
Review
Underdetermined

L1 χ_geo prediction not preregistered pre-test; R²<1% insufficient power; compatible with both models

Discriminating test: Derive explicit χ(Ā) prediction for radar geometry, test with higher-power dataset

Affects: L-BERMのL1 χ_geo形状L-BERM: yesEmpirical BERM: no

F05 δV_m ≈ 10⁻²¹ V geometric coupling

↻ Internal refinement
Original
Mechanism failure
Review
Internal refinement

Applies to pathway A only; pathway B (RPM) operates at correct scale; led to hierarchy inversion

Affects: pathway A geometryL-BERM: yesEmpirical BERM: no

F06 Lorentzian ghost obstruction

= Remains negative
Original
Soliton layer falsified
Review
Soliton layer falsified

Mathematically proven: π₂=0 for timelike A, ghost energy for spacelike A

Affects: L-BERM soliton layerL-BERM: yesEmpirical BERM: no

F07 VGCC resonance 94-183 GHz

= Remains negative
Original
Mechanism impossible
Review
Mechanism impossible

5 orders of magnitude too fast for protein conformational dynamics; correctly abandoned

Affects: BERM v6–v9 resonance claimL-BERM: noEmpirical BERM: no

F08 Water resonance physics error

= Remains negative
Original
Physics error
Review
Physics error

2.45 GHz water absorption is rotational damping, not amplifying resonance

Affects: BERM v6–v9 documentsL-BERM: noEmpirical BERM: no

F09 Eight fabricated DOIs

= Remains negative
Original
Documentation integrity
Review
Documentation integrity

AI-generated citation hallucinations in early documents; does not affect physics or data

Affects: BERM v6–v9 documentsL-BERM: noEmpirical BERM: no

F10 Cross-sectional r = -0.46

↻ Reclassified
Original
Weak explanatory power
Review
Wrong test

Proxy ≠ dose; attenuation bias compresses r; community data (D-controlled) yields R²=0.999

Discriminating test: FieldState-measured panel with attenuation correction

Affects: demographic claimsL-BERM: noEmpirical BERM: no

F11 Finland density model failure

↻ Internal refinement
Original
Catastrophic failure
Review
Internal refinement

Revealed missing personal-EMF component; led to two-component architecture correction

Discriminating test: Two-component model (ambient + personal) validation

Affects: density-only modelL-BERM: noEmpirical BERM: no

F12 Lindgren 16 premises vs standard 6

= Remains negative
Original
Parsimony problem
Review
Parsimony problem

Valid epistemological concern for L-BERM geometric layer; not a falsification

Affects: L-BERM theory layerL-BERM: yesEmpirical BERM: no

F13 κ coupling and gauge non-invariance

= Remains negative
Original
Consistency problem
Review
Consistency problem

Open theoretical problems in Lindgren's framework; weakens L-BERM derivations

Affects: L-BERM theory layerL-BERM: yesEmpirical BERM: no

3つの周波数チャネル

各生物学的経路は3つの周波数チャネルの1つに対応し、2つの生物学的カットオフで定義される:f_c ~ 1 kHz(膜RC)およびf_RPM ~ 1 MHz(ラジカル対コヒーレンス)。

ELFf < 300 Hz

CRY radical-pair (B) and HPA→HPG (D) via H(f) low-pass filter

FDA: PEMF / TMS / VNS
BD
IF300 Hz – 1 MHz

Intracellular via IFO-VGIC and DEP on mitotic spindle

FDA: TTFields (Optune)
A_mitotic
RF> 1 MHz

VGCC/ROS (A), CRY radical-pair spin chemistry (B) and HPA→HPG (D)

FDA: PRF / Diathermy
ABD

拡張エビデンスカタログ

150件の追加レコード(BERM v17参考文献より)。ソースレベルのレビュー用に保持。各々はレガシー経路、エビデンスレベル、移行ステータスで分類。

AVGIC → Ca²⁺ → ROS → sperm damage

引用エビデンスレベルN移行ステータス

Pall ML (2013). Electromagnetic fields act via activation of voltage-gated calcium channels to produce beneficial or adverse effects. J Cell Mol Medi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2013ERepeated component finding / endpointSuperseded by a curated evidence relation

Pall ML (2018). Wi-Fi is an important threat to human health. Environ Resi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2018ERepeated component finding / endpointMigration candidate

Tang J et al. (2024). Proton dynamics in voltage-gated calcium channel selectivity filter. Nat Communi

Candidate evidence for the mapped biological intermediate in the stated system; it does not identify population exposure, couple fecundability or a TFR coefficient.

2024ERepeated component finding / endpointMigration candidate

Salford LG et al. (2003). Nerve cell damage in mammalian brain after exposure to microwaves from GSM mobile phones. Environ Health Perspecti

Candidate evidence for the named organ barrier state in the stated system; it does not create a global barrier multiplier or a human reproductive effect size.

2003MMechanistic intermediateMigration candidate

Yakymenko I et al. (2016). Oxidative mechanisms of biological activity of low-intensity radiofrequency radiation. Electromagn Biol Medi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2016ERepeated component finding / endpointMigration candidate

Panagopoulos DJ et al. (2025). Umbrella review of EMF biological effects. Variousi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2025ERepeated component finding / endpointMigration candidate

PubMed 41036143 (2025). Ambient conditions and semen quality across COVID periods. Reproductive Sciencesi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2025M|CMechanism + association2672Context only

PMC10804479 (2024). COVID temporarily impairs then recovers semen parameters. Andrologyi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2024M|CMechanism + association85Context only

PMC12540804 (2025). 6-month sperm recovery from COVID. Frontiers in Reproductive Healthi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2025MMechanistic intermediate74Context only

Zhang et al. (2025). China COVID relaxation effect on semen quality. Transl Androl Uroli

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2025M|CMechanism + associationContext only

Lea RG, Byers AS, Sumner RN, et al. (2016). Environmental chemicals impact dog semen quality in vitro and may be associated with a temporal decline in sperm motility and increased cryptorchidism. Scientific Reportsi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2016M|CMechanism + association1925Outside active graph

Hensel B, Schmelz F, Gerstner K, et al. (2025). Temporal trends in semen quality of breeding bulls and boars. Animal Reproduction Sciencei

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2025M|CMechanism + association667125Outside active graph

Becker RO, Selden G (1985). The Body Electric: Electromagnetism and the Foundation of Life. William Morrow & Co.i

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

1985L*Testable theory candidateOutside active graph

Hydro-Québec survey (cited in Becker, Cross Currents) (1976). Sex ratio shift in children of power station workers. Cited in Becker RO, Cross Currents (1990)i

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

1976L*Testable theory candidateOutside active graph

Czerski P (1979). Microwave effects on the blood-forming system with particular reference to the lymphocyte. Annals of the New York Academy of Sciencesi

Historical or precursor context retained for provenance; it does not satisfy the current FieldState measurement contract or establish a modern reproductive parameter.

1979L*Testable theory candidateHistorical context

Gandhi OP, Lazzi G, Furse CM (1996). Electromagnetic absorption in the human head and neck for mobile telephones at 835 and 1900 MHz. IEEE Transactions on Microwave Theory and Techniquesi

Candidate evidence for a FieldState measurement signature, geometry or organ-transfer feature in the stated system; it does not establish a human reproductive exposure-response or TFR coefficient.

1996ERepeated component finding / endpointMigration candidate

Huss A, Egger M, Hug K, Huwiler-Müntener K, Röösli M (2007). Source of Funding and Results of Studies of Health Effects of Mobile Phone Use: Systematic Review of Experimental Studies. Environmental Health Perspectivesi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2007ERepeated component finding / endpointOutside active graph

National Toxicology Program (2018). Toxicology and carcinogenesis studies in Hsd:Sprague Dawley SD rats exposed to whole-body radio frequency radiation at a frequency (900 MHz). NTP Technical Report 595i

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2018ERepeated component finding / endpointContext only

Falcioni L, Bua L, Tibaldi E, Lauriola M, De Angelis L, Thayer GP, Gnudi G, Mandrioli D, Manservigi M, Manservisi F, Manzoli I, Menghetti I, Montella R, Panzacchi S, Sgargi D, Strollo V, Vornoli A, Belpoggi F (2018). Report of final results regarding brain and heart tumors in Sprague-Dawley rats exposed from prenatal life until natural death to mobile phone radiofrequency field. Environmental Researchi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2018ERepeated component finding / endpointContext only

IARC Working Group on the Evaluation of Carcinogenic Risks to Humans (2011). Non-ionizing radiation, Part 2: Radiofrequency electromagnetic fields. IARC Monographs on the Evaluation of Carcinogenic Risks to Humans, Vol. 102i

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2011ERepeated component finding / endpointContext only

Blank M, Goodman R (2009). Electromagnetic fields stress living cells. Pathophysiologyi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2009MMechanistic intermediateMigration candidate

Friedman J, Kraus S, Hauptman Y, Schiff Y, Seger R (2007). Mechanism of short-term ERK activation by electromagnetic fields at mobile phone frequencies. Biochemical Journali

Retracted by Biochemical Journal in 2024. Retained for provenance only: it documents which source the legacy A-pathway narrative once leaned on, and carries no evidential weight for any causal node, endpoint or parameter.

2007MMechanistic intermediateRetracted (2024) — provenance only

Panagopoulos DJ, Johansson O, Carlo GL (2013). Polarization: A Key Difference between Man-made and Natural Electromagnetic Fields, in regard to Biological Activity. Scientific Reportsi

Theoretical or biophysical premise retained as structural context; it does not by itself establish a biological endpoint or a TFR coefficient.

2013MMechanistic intermediateHistorical context

Lai H, Singh NP (2004). Magnetic-field-induced DNA strand breaks in brain cells of the rat. Environmental Health Perspectivesi

Candidate evidence for the mapped biological intermediate in the stated system; it does not identify population exposure, couple fecundability or a TFR coefficient.

2004MMechanistic intermediateMigration candidate

Belyaev I, Dean A, Eger H, Hubmann G, Jandrisovits R, Kern M, Kundi M, Moshammer H, Lercher P, Müller K, Oberfeld G, Ohnsorge P, Pelzmann P, Scheingraber C, Thill R (2016). EUROPAEM EMF Guideline 2016 for the prevention, diagnosis and treatment of EMF-related health problems and illnesses. Reviews on Environmental Healthi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2016MMechanistic intermediateOutside active graph

Miller AB, Sears ME, Morgan LL, Davis DL, Hardell L, Oremus M, Soskolne CL (2019). Risks to Health and Well-Being From Radio-Frequency Radiation Emitted by Cell Phones and Other Wireless Devices. Frontiers in Public Healthi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2019MMechanistic intermediateContext only

Melnick RL (2019). Commentary on the utility of the National Toxicology Program study on cell phone radiofrequency radiation data for assessing human health risks despite unfounded criticisms. Environmental Researchi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2019MMechanistic intermediateContext only

Schwan HP, Piersol GM (1957). The absorption of electromagnetic energy in body tissues. IRE Transactions on Medical Electronicsi

Historical or precursor context retained for provenance; it does not satisfy the current FieldState measurement contract or establish a modern reproductive parameter.

1957ERepeated component finding / endpointHistorical context

Yu G et al. (2019). Long-term exposure to 4G smartphone RF-EMR diminished male reproductive potential by directly disrupting Spock3-MMP2-BTB axis. Sci Total Environi

First direct demonstration of BTB disruption by telecom-frequency RF. Long-term 2605 MHz (4G) exposure gradually damaged spermatogenesis via the Spock3-MMP2-BTB axis. The BTB uses the same tight junction proteins (occludin, ZO-1) as the BBB. Validates extending BERM pathway F (BBB multiplier) to a Biological Barrier Multiplier covering both BBB and BTB. Time-dependent toxicity consistent with positive feedback.

2019ERepeated component finding / endpointSuperseded by a curated evidence relation

Ulusoy A et al. (2025). Acute exposure to 27.12 MHz RF-EMF disrupts BBB integrity via eNOS activation and occludin down-regulation. Int J Basic Med Scii

30 min RF-EMF at 27.12 MHz significantly increased eNOS gene expression and decreased occludin — without oxidative stress or inflammation. Longer exposures (180, 360 min) produced HIF-1a increase, claudin-1 and occludin decrease, and histopathological edema. Confirms the BBB opening mechanism is TJ-protein mediated (occludin, claudin-1) — the same proteins as in BTB. The eNOS pathway is non-thermal and non-oxidative at short exposures.

2025ERepeated component finding / endpointMigration candidate

Nature Communications (2026). All four voltage-sensing domains of human CaV3.1 activate within a narrow voltage range near resting membrane potential.i

T-type channels are maximally sensitive NEAR resting potential (-70 to -50 mV) — the exact voltage range where EMF-induced perturbations (via Schwan equation) are largest. This is the bifurcation amplifier that resolves BERM's dVm problem.

2026ERepeated component finding / endpointMigration candidate

Xiang C et al. (2025). T-type VGCC inhibition reduces testosterone synthesis in Leydig cells. Reproduction (Oxford). doi:10.1530/REP-24-0432i

Completes the Lindgren-to-testosterone chain: EMF -> Schwan dVm -> T-type Cav3 activation -> Ca2+ -> StAR -> cholesterol transport -> testosterone. Elevates pathway D from 'Not derived' to 'Derived via T-type bifurcation.'

2025ERepeated component finding / endpointMigration candidate

Ma T et al. (2026). Cav1 and Cav3 are both essential for spermatogenesis. Andrology. doi:10.1111/andr.70119i

Both L-type AND T-type channels are required for spermatogenesis. EMF perturbation of T-type window current provides a mechanism for chronic, low-level disruption of spermatocyte development without requiring high-intensity L-type activation.

2026ERepeated component finding / endpointMigration candidate

Jimenez et al. (2019): tumour-specific AM-RF-EMF at 27.12 MHz induces HCC differentiation via Cav3.2; FDA HDE approval followed in 2023 (H220001).i

Protocol-specific component evidence for a 27.12 MHz amplitude-modulated Cav3.2 route in HCC. The 2023 HDE establishes probable benefit for a rare-disease device, not randomized effectiveness; environmental, reproductive and population transfer remains open.

2019ERepeated component finding / endpointSuperseded by a curated evidence relation

Cross-Disorder Group of the PGC. Lancet (2013): CACNA1C identified as shared risk locus across ASD, ADHD, bipolar disorder, major depression, and schizophrenia in genome-wide analysis of 33,332 cases and 27,888 controls.i

CACNA1C encodes L-type VGCC Cav1.2 — the same channel through which EMF effects are mediated (pathway A). Genetic variants that alter channel gating change the individual's chi_channel, predicting differential EMF sensitivity. Not a direct EMF study — establishes that VGCC variants modulate psychiatric risk, supporting the gene × environment prediction.

2013ERepeated component finding / endpoint61220Migration candidate

Splawski I et al. Cell (2004): G406R gain-of-function mutation in CACNA1C (Cav1.2) causes Timothy syndrome with autism in 80% of affected individuals — highest penetrance of any syndromic ASD form.i

Direct proof that excessive Ca2+ influx through a single VGCC gene is sufficient to cause autism. The mechanism (too much calcium → disrupted neurodevelopment) parallels BERM's prediction that chronic EMF-induced Ca2+ elevation during neurodevelopment → similar but milder effects. Timothy syndrome is a RARE de novo mutation — significance is mechanistic, not epidemiological.

2004ERepeated component finding / endpointMigration candidate

Bhatt DK et al. PLOS Genetics (2019): Timothy syndrome gain-of-function mutation in Cav1.2 homolog disrupts axon targeting and behaviour through interaction with selective autophagy genes.i

Identifies the cellular mechanism through which excessive VGCC Ca2+ causes autism: axon targeting errors → misplaced synapses → circuit defects → behavioural phenotype. EMF-induced chronic Ca2+ elevation could produce similar, milder axon targeting errors during critical neurodevelopmental periods.

2019ERepeated component finding / endpointMigration candidate

Various GWAS (2012): Two SNPs in CACNA1G (rs757415, rs12603112), encoding T-type calcium channel Cav3.1, are associated with autism spectrum disorder.i

Connects BERM's T-type bifurcation mechanism directly to neurodevelopmental disorders. T-type channels operate at the bifurcation point near resting potential → maximally sensitive to EMF perturbation. Individuals with CACNA1G risk variants have altered T-type gating → altered chi_channel → differential prenatal EMF sensitivity.

2012M|CMechanism + associationMigration candidate

BRPM → CRY → circadian disruption

CRY2の下流効果は概日時計を超えて拡がる。Iversen et al. (2025) は、CRY2がTRPファミリーのカチオンチャネルであるTRPC1と物理的に相互作用し、PEMF曝露後にこの複合体が共に核へ移行することを示した。このカルシウム流入経路はCRY2依存性(CRY2サイレンシングにより遮断)、光依存性(暗所で消失)、FAD依存性(RFKサイレンシングにより減衰)であり、すべてRPMメカニズムの特徴である。重要なことに、TRPC1は電位依存性カルシウムチャネルではなく、L型VGCC遮断薬では遮断されない。これは経路AとBが薬理学的に分離可能であり続けることを意味するが、経路Bの生物学的影響範囲は以前想定されていたよりも大きい。

引用エビデンスレベルN移行ステータス

Engels S et al. (2014). Anthropogenic electromagnetic noise disrupts magnetic compass orientation in migratory birds. Naturei

Candidate evidence for a FieldState measurement signature, geometry or organ-transfer feature in the stated system; it does not establish a human reproductive exposure-response or TFR coefficient.

2014ERepeated component finding / endpointMigration candidate

Hore PJ & Mouritsen H (2016). The radical pair mechanism of magnetoreception. Annu Rev Biophysi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2016ERepeated component finding / endpointMigration candidate

Sherrard RM et al. (2018). Low-intensity electromagnetic fields induce human cryptochrome to modulate intracellular reactive oxygen species. PLOS Biologyi

Primary-source-qualified cellular CRY/ROS component; no device-specific gonadal dose or fertility coefficient.

2018M|CMechanism + associationSuperseded by a curated evidence relation

Chae K-S, Oh I-T, Lee S-H, Kim S-C (2019). Blue light-dependent human magnetoreception in geomagnetic food orientation. PLOS ONEi

Candidate evidence for a FieldState measurement signature, geometry or organ-transfer feature in the stated system; it does not establish a human reproductive exposure-response or TFR coefficient.

2019M|CMechanism + association41Superseded by a curated evidence relation

Yoshii T et al. (2009). Cryptochrome mediates light-dependent magnetosensitivity in Drosophila. Naturei

Candidate evidence for a FieldState measurement signature, geometry or organ-transfer feature in the stated system; it does not establish a human reproductive exposure-response or TFR coefficient.

2009MMechanistic intermediateSuperseded by a curated evidence relation

Various (2024). FAD-superoxide radical pair mechanism in cryptochrome. Nat Communi

The legacy bibliography points to a possible relevant source, but the identity, bibliographic metadata or protocol must be independently verified before it can enter active FieldState evidence.

2024M|CMechanism + associationUnverified citation

Various (2026). Non-monotonic magnetic field effects in planarians confirm RPM predictions. PNAS Nexusi

The legacy bibliography points to a possible relevant source, but the identity, bibliographic metadata or protocol must be independently verified before it can enter active FieldState evidence.

2026M|CMechanism + associationUnverified citation

Battelle Memorial Institute (1980). EMF effects on pineal melatonin production. Reporti

Historical or precursor context retained for provenance; it does not satisfy the current FieldState measurement contract or establish a modern reproductive parameter.

1980MMechanistic intermediateHistorical context

Reiter RJ et al. (2007). Light at night, chronodisruption, melatonin suppression, and cancer risk. Crit Rev Oncogi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2007M|CMechanism + associationContext only

Panagopoulos DJ, Karabarbounis A, Margaritis LH (2004). Effect of GSM 900-MHz Mobile Phone Radiation on the Reproductive Capacity of Drosophila melanogaster. Electromagnetic Biology and Medicinei

Candidate reproductive-endpoint evidence in the stated system; it cannot by itself quantify human couple fecundability, ASFR or TFR.

2004MMechanistic intermediateMigration candidate

Goldstein JR, Kreyenfeld M (2011). Has East Germany Overtaken West Germany? Recent Trends in Order-Specific Fertility. Population and Development Reviewi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2011ERepeated component finding / endpointOutside active graph

European Commission (2018). Eurobarometer: Fertility and family issues. Eurobarometer Special Surveysi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2018ERepeated component finding / endpointOutside active graph

Agarwal A, Desai NR, Makker K, Varghese A, Mouradi R, Sabanegh E, Sharma R (2009). Effects of radiofrequency electromagnetic waves (RF-EMW) from cellular phones on human ejaculated semen: an in vitro pilot study. Fertility and Sterilityi

Candidate reproductive-endpoint evidence in the stated system; it cannot by itself quantify human couple fecundability, ASFR or TFR.

2009MMechanistic intermediateMigration candidate

Adams JA, Galloway TS, Mondal D, Esteves SC, Mathews F (2014). Effect of mobile telephones on sperm quality: a systematic review and meta-analysis. Environment Internationali

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2014ERepeated component finding / endpointSuperseded by a curated evidence relation

Avendaño C, Mata A, Sanchez Sarmiento CA, Doncel GF (2012). Use of laptop computers connected to internet through Wi-Fi decreases human sperm motility and increases sperm DNA fragmentation. Fertility and Sterilityi

Candidate reproductive-endpoint evidence in the stated system; it cannot by itself quantify human couple fecundability, ASFR or TFR.

2012MMechanistic intermediateMigration candidate

Kesari KK, Agarwal A, Henkel R (2018). Radiations and male fertility. Reproductive Biology and Endocrinologyi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2018MMechanistic intermediateMigration candidate

La Vignera S, Condorelli RA, Vicari E, D'Agata R, Calogero AE (2012). Effects of the exposure to mobile phones on male reproduction: a review of the literature. Journal of Andrologyi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2012MMechanistic intermediateMigration candidate

Skakkebaek NE, Rajpert-De Meyts E, Buck Louis GM, Toppari J, Andersson AM, Eisenberg ML, Jensen TK, Jorgensen N, Swan SH, Sapra KJ, Ziebe S, Priskorn L, Juul A (2016). Male Reproductive Disorders and Fertility Trends: Influences of Environment and Genetic Susceptibility. Physiological Reviewsi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2016ERepeated component finding / endpointContext only

Carlsen E, Giwercman A, Keiding N, Skakkebaek NE (1992). Evidence for decreasing quality of semen during past 50 years. BMJi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

1992ERepeated component finding / endpointContext only

Swan SH, Elkin EP, Fenster L (2000). The question of declining sperm density revisited: an analysis of 101 studies published 1934-1996. Environmental Health Perspectivesi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2000ERepeated component finding / endpointContext only

BERM argument #200: LED lighting EMF component. LED switch-mode power supplies produce 20–200 kHz EMF with harmonics. Studies attributing LED health effects to blue light (Tosini 2016) did not control for EMF. No separation experiment exists.i

LED bulbs produce both blue light and kHz-range EMF; incandescent bulbs produce neither. Any study comparing LED to incandescent cannot separate spectral from electromagnetic effects. TTFields (FDA-approved, 100–300 kHz) confirms biological activity of these frequencies. BERM-identified research gap.

2026CObservational associationMigration candidate

BERM argument #204: CRT→LCD/LED display transition (2005–2015) multiplied household EMF. Screen count 1→3.5, bedroom penetration 15%→70%, built-in Wi-Fi added, viewing distance decreased.i

Display transition was a multiplicative EMF change: count × size × bedroom penetration × Wi-Fi × hours × proximity. Bedroom TV at 1.5–2m from pineal gland during melatonin window produces simultaneous blue light + EMF. BERM circadian weighting (2.5×) amplifies this. No single-factor analysis captures the multiplicative effect.

2026CObservational associationMigration candidate

Iversen JN et al. (2025). Magnetically Stimulated Myogenesis Recruits a CRY2-TRPC1 Photosensitive Signaling Axis. Cells 14(3):231i

CRY2 physically interacts with TRPC1 (a TRP channel, NOT a VGCC) and the complex co-translocates to the nucleus after PEMF exposure. This gives pathway B (CRY/RPM) a second downstream branch: calcium signaling via TRPC1, independent of pathway A (VGCC). Blocked by CRY2 silencing, darkness, and RFK silencing — all RPM hallmarks. NOT blocked by L-type VGCC blockers (nifedipine), confirming pharmacological separability from pathway A. Demonstrated in myoblasts; gonadal cell confirmation pending (prediction TRPC1-1).

2025ERepeated component finding / endpointSuperseded by a curated evidence relation

DHPA → HPG cross-inhibition

引用エビデンスレベルN移行ステータス

Pawlak K et al. (2025). EMF exposure and corticosterone elevation in rodents. Variousi

The legacy bibliography points to a possible relevant source, but the identity, bibliographic metadata or protocol must be independently verified before it can enter active FieldState evidence.

2025MMechanistic intermediateUnverified citation

Kacem S et al. (2024). EMF exposure and depression risk. Variousi

The legacy bibliography points to a possible relevant source, but the identity, bibliographic metadata or protocol must be independently verified before it can enter active FieldState evidence.

2024M|CMechanism + associationUnverified citation

Esmailzadeh S et al. (2019). Mobile phone use and salivary cortisol. Variousi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2019CObservational association200Context only

Travison TG et al. (2007). A population-level decline in serum testosterone levels in American men. JCEMi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2007ERepeated component finding / endpoint1532Context only

Santi D et al. (2025). Meta-analysis: secular testosterone decline 1971-2024. Variousi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2025ERepeated component finding / endpoint1000000Context only

Lokeshwar SD et al. (2021). Decline in serum testosterone in adolescents and young adults. Eur Urol Focusi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2021M|CMechanism + associationContext only

WHO/various (2023). Meta-analysis: EMF effects on testosterone (29 animal studies). Variousi

The legacy bibliography points to a possible relevant source, but the identity, bibliographic metadata or protocol must be independently verified before it can enter active FieldState evidence.

2023ERepeated component finding / endpointUnverified citation

Puts DA et al. (2008). Testosterone is associated with mating success but not attractiveness or masculinity in human males. Anim Behavi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2008M|CMechanism + association119Outside active graph

Goetz SMM & Carre JM (2024). Exogenous testosterone influences sexual overperception bias. Front Psycholi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2024MMechanistic intermediate190Outside active graph

Dreher JC et al. (2016). Testosterone causes both prosocial and antisocial status-enhancing behaviors in human males. PNASi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2016ERepeated component finding / endpointOutside active graph

Mehta PH & Prasad S (2015). The dual-hormone hypothesis for social status. Curr Opin Behav Scii

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2015M|CMechanism + associationOutside active graph

Various (2018). Meta-analysis of dual-hormone hypothesis (30 studies, N=8538). Variousi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2018ERepeated component finding / endpoint8538Outside active graph

Thornhill R & Gangestad SW (1994). Human fluctuating asymmetry and sexual behavior. Psychol Scii

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

1994ERepeated component finding / endpointOutside active graph

Porges SW (2001). The polyvagal theory: phylogenetic substrates of a social nervous system. Int J Psychophysioli

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2001ERepeated component finding / endpointOutside active graph

Carter CS (2021). Oxytocin and vasopressin in the evolution of sociality. Variousi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2021ERepeated component finding / endpointOutside active graph

Feldman R (2012). Oxytocin and social affiliation in humans. Horm Behavi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2012M|CMechanism + associationOutside active graph

Guy AW, Chou CK, Lin JC, Christensen D (1984). Chronic exposure of rats to 2.45 GHz microwaves (US Air Force SAM-TR-83-38). USAF School of Aerospace Medicinei

Candidate evidence for the mapped biological intermediate in the stated system; it does not identify population exposure, couple fecundability or a TFR coefficient.

1984MMechanistic intermediateMigration candidate

Belpomme D, Campagnac C, Irigaray P (2015). Reliable disease biomarkers characterizing and identifying electrohypersensitivity and multiple chemical sensitivity as two etiopathogenic aspects of a unique pathological disorder. Reviews on Environmental Healthi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2015MMechanistic intermediateOutside active graph

INTERPHONE Study Group (2010). Brain tumour risk in relation to mobile telephone use: results of the INTERPHONE international case-control study. International Journal of Epidemiologyi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2010ERepeated component finding / endpointOutside active graph

Volkow ND, Tomasi D, Wang GJ, Vaska P, Fowler JS, Telang F, Alexoff D, Logan J, Wong C (2011). Effects of Cell Phone Radiofrequency Signal Exposure on Brain Glucose Metabolism. JAMAi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2011ERepeated component finding / endpointOutside active graph

Pall ML (2016). Microwave frequency electromagnetic fields (EMFs) produce widespread neuropsychiatric effects including depression. Journal of Chemical Neuroanatomyi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2016MMechanistic intermediateMigration candidate

Hardell L, Carlberg M (2015). Mobile phone and cordless phone use and the risk for glioma — analysis of pooled case-control studies in Sweden, 1997-2003 and 2007-2009. Pathophysiologyi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2015MMechanistic intermediateOutside active graph

EMicrobiome

引用エビデンスレベルN移行ステータス

Poutahidis T et al. (2014). Probiotic microbes sustain youthful serum testosterone levels and testicular size in aging mice. PLOS ONEi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2014MMechanistic intermediateContext only

Erdman SE & Poutahidis T (2016). Microbes and oxytocin: benefits for host physiology and behavior. Int Rev Cell Mol Bioli

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2016M|CMechanism + associationContext only

Poutahidis T et al. (2013). Microbial symbionts accelerate wound healing via oxytocin. PLOS ONEi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2013MMechanistic intermediateContext only

Jin Y et al. (2022). Wi-Fi exposure alters gut microbiome composition in mice. Variousi

Candidate evidence for the mapped biological intermediate in the stated system; it does not identify population exposure, couple fecundability or a TFR coefficient.

2022MMechanistic intermediateMigration candidate

FBioelectric code

引用エビデンスレベルN移行ステータス

Sempou E et al. (2022). Membrane potential drives spermatogonial stem cell differentiation via mTOR. Nat Communi

Candidate evidence for the mapped biological intermediate in the stated system; it does not identify population exposure, couple fecundability or a TFR coefficient.

2022M|CMechanism + associationSuperseded by a curated evidence relation

Brown SG et al. (2016). Depolarization of sperm membrane potential in infertile men. Variousi

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2016M|CMechanism + associationContext only

Zhang D & Levin M (2025). Bioelectricity as a universal signaling mechanism. Variousi

The legacy bibliography points to a possible relevant source, but the identity, bibliographic metadata or protocol must be independently verified before it can enter active FieldState evidence.

2025M|CMechanism + associationUnverified citation

TBioelectric signaling / developmental

引用エビデンスレベルN移行ステータス

Levine H et al. (2017). Temporal trends in sperm count: a systematic review and meta-regression analysis. Hum Reprod Updatei

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2017ERepeated component finding / endpointContext only

Levine H et al. (2023). Temporal trends in sperm count: updated meta-regression. Hum Reprod Updatei

Context for a mapped biological endpoint, co-exposure or alternative mechanism; no FieldState causal edge, population dose or TFR parameter is inferred.

2023ERepeated component finding / endpointContext only

Houston BJ et al. (2016). Radiofrequency electromagnetic radiation and sperm quality. Variousi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2016M|CMechanism + associationMigration candidate

Mollerlokken OJ & Moen BE (2008). Is fertility reduced among men exposed to radiofrequency fields in the Norwegian Navy?. Bioelectromagneticsi

Candidate reproductive-endpoint evidence in the stated system; it cannot by itself quantify human couple fecundability, ASFR or TFR.

2008M|CMechanism + association10497Migration candidate

Various (2024). CatSper channel complex in human sperm fertilization. J Clin Investi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2024ERepeated component finding / endpointSuperseded by a curated evidence relation

RWRecovery window

引用エビデンスレベルN移行ステータス

Diem E et al. (REFLEX) (2005). Non-thermal DNA breakage by mobile-phone radiation in human fibroblasts. Mutat Resi

Candidate evidence for the mapped biological intermediate in the stated system; it does not identify population exposure, couple fecundability or a TFR coefficient.

2005M|CMechanism + associationMigration candidate

McCarty DE et al. (2011). Electromagnetic hypersensitivity: evidence for a novel neurological syndrome. Int J Neuroscii

The legacy bibliography points to a possible relevant source, but the identity, bibliographic metadata or protocol must be independently verified before it can enter active FieldState evidence.

2011L*Testable theory candidate1Unverified citation

Manta AK et al. (2014). Reactive oxygen species in Drosophila ovaries after EMF exposure. Electromagn Biol Medi

Candidate reproductive-endpoint evidence in the stated system; it cannot by itself quantify human couple fecundability, ASFR or TFR.

2014MMechanistic intermediateMigration candidate

Santini SJ et al. (2018). EMF and mitochondrial ROS homeostasis. Oxid Med Cell Longevi

A review or synthesis retained as an index to candidate primary studies; it does not independently activate a causal node or calibrate a model parameter.

2018MMechanistic intermediateMigration candidate

Deloitte (2021). Connectivity and mobile trends survey (USA). Deloitte Insightsi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2021CObservational associationContext only

PMC9843116 (2023). UK screen-viewing pre vs post lockdown. BMC Public Healthi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2023M|CMechanism + association1689Context only

PMC11153974 (2024). US child screen time during COVID. JAMA Pediatricsi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2024CObservational association280Context only

PMC12535673 (2025). India medical students screen time and sleep during COVID. Indian J Community Medi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2025M|CMechanism + association470Context only

PMC9767798 (2022). India household electricity consumption during COVID. Energy Policyi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2022CObservational association500Context only

arxiv 2109.13643 (2021). Working from home adaptations and post-pandemic predictions. arXiv preprinti

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2021CObservational associationContext only

ScienceDirect (2023). Irreversible effects of COVID digitalization. Technological Forecasting and Social Changei

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2023CObservational associationContext only

PMC11472795 (2024). Netherlands child mental health 2018-2023 longitudinal. Eur Child Adolesc Psychiatryi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2024ERepeated component finding / endpoint1056Context only

PMC9709147 (2022). Switzerland natural experiment — screen time and mental health. Int J Environ Res Public Healthi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2022M|CMechanism + association674Context only

PMC10982732 (2024). Screen time and child behavioral disorders during COVID (systematic review). Int J Environ Res Public Healthi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2024M|CMechanism + associationContext only

PMC11936785 (2025). One-year post-lockdown mental health trajectories. Lancet Psychiatryi

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2025M|CMechanism + associationContext only

medrxiv Italian sleep study (2020). Evening device exposure and sleep during Italian lockdown. medrxiv preprinti

A behavioral, pandemic or recovery-window observation retained as context; it contains no matched FieldState measurement and is not a natural causal experiment for the active route.

2020MMechanistic intermediateContext only

BSBehavioral suppression

引用エビデンスレベルN移行ステータス

Sanchez-Bayo F, Wyckhuys KAG (2019). Worldwide decline of the entomofauna: A review of its drivers. Biological Conservationi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2019ERepeated component finding / endpointOutside active graph

Thielens A, Bell D, Mortimore DB, Greco MK, Martens L, Joseph W (2018). Exposure of Insects to Radio-Frequency Electromagnetic Fields from 2 to 120 GHz. Scientific Reportsi

Candidate evidence for a FieldState measurement signature, geometry or organ-transfer feature in the stated system; it does not establish a human reproductive exposure-response or TFR coefficient.

2018MMechanistic intermediateMigration candidate

Balmori A (2015). Anthropogenic radiofrequency electromagnetic fields as an emerging threat to wildlife orientation. Reviews on Environmental Healthi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2015MMechanistic intermediateOutside active graph

Balmori A (2006). The incidence of electromagnetic pollution on the amphibian decline: Is this an important piece of the puzzle?. Toxicological and Environmental Chemistryi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2006L*Testable theory candidateOutside active graph

Stuart SN, Chanson JS, Cox NA, Young BE, Rodrigues ASL, Fischman DL, Waller RW (2004). Status and Trends of Amphibian Declines and Extinctions Worldwide. Sciencei

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2004ERepeated component finding / endpointOutside active graph

Favre D (2011). Mobile phone-induced honeybee worker piping. Apidologiei

Candidate evidence for a FieldState measurement signature, geometry or organ-transfer feature in the stated system; it does not establish a human reproductive exposure-response or TFR coefficient.

2011MMechanistic intermediateMigration candidate

Sharma VP, Kumar NR (2010). Changes in honeybee behaviour and biology under the influence of cellphone radiations. Current Sciencei

Candidate evidence for a FieldState measurement signature, geometry or organ-transfer feature in the stated system; it does not establish a human reproductive exposure-response or TFR coefficient.

2010MMechanistic intermediateMigration candidate

Shepherd S, Lima MAP, Oliveira EE, Sharkh SM, Jackson CW, Sherlock MR (2018). Extremely low frequency electromagnetic fields impair the cognitive and motor abilities of honey bees. Scientific Reportsi

Candidate evidence for a FieldState measurement signature, geometry or organ-transfer feature in the stated system; it does not establish a human reproductive exposure-response or TFR coefficient.

2018MMechanistic intermediateMigration candidate

Vanbergen AJ, Insect Pollinators Initiative (2013). Threats to an ecosystem service: pressures on pollinators. Frontiers in Ecology and the Environmenti

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2013ERepeated component finding / endpointOutside active graph

Wang Y, Pan Y, Parsons S, Walker M, Zhang S (2007). Bats respond to polarity of a magnetic field. Proceedings of the Royal Society Bi

Candidate evidence for a FieldState measurement signature, geometry or organ-transfer feature in the stated system; it does not establish a human reproductive exposure-response or TFR coefficient.

2007MMechanistic intermediateMigration candidate

Frick WF, Pollock JF, Hicks AC, Langwig KE, Reynolds DS, Turner GG, Butchkoski CM, Kunz TH (2010). An Emerging Disease Causes Regional Population Collapse of a Common North American Bat Species. Sciencei

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2010ERepeated component finding / endpointOutside active graph

Cucurachi S, Tamis WLM, Vijver MG, Peijnenburg WJGM, Bolte JFB, de Snoo GR (2013). A review of the ecological effects of radiofrequency electromagnetic fields (RF-EMF). Environment Internationali

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2013MMechanistic intermediateOutside active graph

Balmori A (2009). Electromagnetic pollution from phone masts. Effects on wildlife. Pathophysiologyi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2009MMechanistic intermediateOutside active graph

PVPharmacological validation

引用エビデンスレベルN移行ステータス

Various (2020). Calcium channel blockers and male fertility. Variousi

Pharmacological perturbation retained as pathway context only; it is not equivalent to an electromagnetic exposure and does not calibrate FieldState.

2020M|CMechanism + associationContext only

Various (2023). Rapamycin (mTOR inhibitor) effects on fertility. Variousi

Pharmacological perturbation retained as pathway context only; it is not equivalent to an electromagnetic exposure and does not calibrate FieldState.

2023M|CMechanism + associationContext only

Moncrieff J et al. (2022). The serotonin theory of depression: a systematic umbrella review. Mol Psychiatryi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2022ERepeated component finding / endpointOutside active graph

Yang JH et al. (2024). Metformin effects on biological aging in non-human primates. Celli

Pharmacological perturbation retained as pathway context only; it is not equivalent to an electromagnetic exposure and does not calibrate FieldState.

2024MMechanistic intermediateContext only

SSentinel / cross-species

引用エビデンスレベルN移行ステータス

Hallmann CA et al. (2017). More than 75 percent decline over 27 years in total flying insect biomass in protected areas. PLOS ONEi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2017ERepeated component finding / endpointOutside active graph

Rosenberg KV et al. (2019). Decline of the North American avifauna. Sciencei

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2019ERepeated component finding / endpointOutside active graph

Klimentidis YC et al. (2010). Canaries in the coal mine: a cross-species analysis of the plurality of obesity epidemics. Proc R Soc Bi

Retained bibliographic context outside the active BERM causal graph; forcing a canonical node would invent a causal edge not supported by this record.

2010M|CMechanism + associationOutside active graph

BERM project (2026). Cross-Species Lag Invariance: 31-country bee colony loss to TFR panel analysis. BERM internal analysisi

Source-verified COLOSS 23-country panel: bee colony winter loss increases precede TFR declines by ~2 years. 20/23 BERM-direction, circular-shift p=0.006, Bonferroni p=0.046. Year-change analysis confirms temporal co-variation. Correlational; not peer-reviewed.

2026CObservational association23Migration candidate

COLOSS honey bee winter loss monitoring, 23-country panel (2010–2022). Source-verified against original COLOSS annual reports.i

Source-verified 23-country COLOSS panel. Within-country bee winter loss → TFR correlation: pooled r=−0.272, optimal lag 2 years, circular-shift p=0.006. 20/23 countries BERM-direction. Replicates across World Bank and WPP 2024 TFR products.

2026CObservational association23Migration candidate

PECBMS Pan-European Common Bird Monitoring Scheme, 27-country composite index (2002–2022). Detrended breeding bird population indices.i

27-country PECBMS breeding bird composite index. Detrended bird population decline precedes TFR decline by ~2.5 years: 21/27 countries BERM-direction, r=0.182, p=0.006. Signal weaker than bee but broader taxonomic scope.

2026CObservational association27Migration candidate

BERM internal analysis: USGS Breeding Bird Survey routes near Cold War Nike radar/fire control sites (1966–2019). 1,381 routes, 268 sites.i

1,381 BBS routes near 268 Cold War Nike sites. BERM-direction proximity gradient: <50km −0.526%/yr vs >100km +0.096%/yr (Welch p=0.031). Spearman ρ=+0.088 (p=0.001). However, site closure did not predict bird recovery. Correlational; not peer-reviewed.

2026CObservational association1381Migration candidate

Rothamsted Insect Survey suction trap network, UK (1969–2016). First-difference aphid abundance vs TFR.i

Rothamsted suction trap aphid abundance (UK, 1969–2016). First-difference analysis: aphid decline precedes TFR decline by ~2 years, r=0.660, p=0.021. Single-country result; consistent with short-lifecycle sentinel hypothesis.

2026CObservational association1Migration candidate

Boyes et al. (2021, Science Advances): LED streetlights reduced moth caterpillar abundance by 47% vs unlit sites. Pawson & Bader (2014): LED traps captured 48% more insects than sodium.i

LED streetlights cause greater insect mortality than sodium lamps. Conventionally attributed to light spectrum, but LEDs also emit kHz EMF from drivers. BERM predicts the EMF component contributes independently. Street LED deployment (2012+) overlaps temporally with accelerating insect decline.

2021CObservational associationMigration candidate

BERM argument #202: NEXRAD deployment (1988–1997) at S-band (2.7 GHz ≈ Wi-Fi) temporally coincides with Hallmann insect biomass data onset (1989). Thielens 2018: insect RF absorption resonates at these frequencies.i

159 NEXRAD stations deployed 1988–1997 at 250 kW–1 MW peak power, 2.7–3.0 GHz (S-band). Hallmann's −76% insect biomass dataset begins 1989. S-band wavelength (λ/2 ≈ 5.4 cm) matches large flying insect body size, producing resonant absorption. Protected nature reserves are not shielded from radar signals.

2026CObservational association159Migration candidate

Lindecke et al. (2026, Science): RF noise disrupts bat magnetic compass for hours. Wind turbines produce ELF (blade pass) + kHz (inverter) EMF in bat habitats. Nicholls & Racey (2007, 2009): bat activity reduced near radar.i

Wind turbines produce EMF in bat habitats. Lindecke 2026 shows RF disrupts bat compass for hours. BERM predicts: compass-disrupted bats near turbines have elevated collision risk. This mechanistic link (EMF → disorientation → mortality) is independent of direct blade-strike explanations.

2026CObservational associationMigration candidate

BERM argument #205: Satellite constellations (Starlink 6000+, OneWeb, Kuiper) as predictive test. BERM predicts measurable effects on migratory species by 2030.i

Satellite constellations represent a new EMF layer with unique properties: global coverage, independent of national policy, ground-based infrastructure not required. BERM predicts: migratory species using magnetic compass (birds, bats, sea turtles) will show measurable behavioral effects as constellation density increases. Novel and falsifiable.

2026L*Testable theory candidatePrediction

SESex-ratio endpoint

引用エビデンスレベルN移行ステータス

Selye H (1950). Stress and the General Adaptation Syndrome. BMJi

Historical or precursor context retained for provenance; it does not satisfy the current FieldState measurement contract or establish a modern reproductive parameter.

1950ERepeated component finding / endpointHistorical context

EHSIndividual susceptibility

引用エビデンスレベルN移行ステータス

Belpomme D et al. (2022). Electrohypersensitivity as a newly identified neurologic pathological disorder. Int J Mol Scii

The legacy bibliography points to a possible relevant source, but the identity, bibliographic metadata or protocol must be independently verified before it can enter active FieldState evidence.

2022M|CMechanism + association1000Unverified citation

Various (2024). 5G RF-EMF effects on sleep EEG in CACNA1C genotyped volunteers. medrxivi

The legacy bibliography points to a possible relevant source, but the identity, bibliographic metadata or protocol must be independently verified before it can enter active FieldState evidence.

2024L*Testable theory candidateUnverified citation

Various (2023). Wi-Fi exposure and HRV in healthy young volunteers. PMCi

Candidate evidence for the mapped biological intermediate in the stated system; it does not identify population exposure, couple fecundability or a TFR coefficient.

2023MMechanistic intermediateMigration candidate

HHistorical / precursor

引用エビデンスレベルN移行ステータス

Becker RO (1985). The Body Electric: Electromagnetism and the Foundation of Life. Book (Morrow)i

Historical or precursor context retained for provenance; it does not satisfy the current FieldState measurement contract or establish a modern reproductive parameter.

1985L*Testable theory candidateHistorical context

Frey AH (1961). Auditory system response to radio frequency energy. Aerosp Medi

Historical or precursor context retained for provenance; it does not satisfy the current FieldState measurement contract or establish a modern reproductive parameter.

1961ERepeated component finding / endpointHistorical context

Adey WR (1981). Tissue interactions with nonionizing electromagnetic fields. Physiol Revi

Historical or precursor context retained for provenance; it does not satisfy the current FieldState measurement contract or establish a modern reproductive parameter.

1981ERepeated component finding / endpointHistorical context

theoryTheoretical premise

引用エビデンスレベルN移行ステータス

Lindgren J, Kovacs A, Liukkonen J (2025). Geometric electrodynamics from Weyl geometry. Variousi

Theoretical or biophysical premise retained as structural context; it does not by itself establish a biological endpoint or a TFR coefficient.

2025MMechanistic intermediateHistorical context

Vassallo G, Catania F, Ferro M (2025). Independent validation of Lindgren geometric electrodynamics derivation. Preprinti

The legacy bibliography points to a possible relevant source, but the identity, bibliographic metadata or protocol must be independently verified before it can enter active FieldState evidence.

2025L*Testable theory candidateUnverified citation

孤立した発見:メカニズムのないデータ

研究者知見批判メカニズム(現在)
1976Adey-BlackmanCa²⁺ ウィンドウ効果「非線形=アーチファクト」共鳴振動 (Kim 2026)
1995Lai-SinghDNA鎖切断「光子が弱すぎる」VGCC/IFO経由のROS (Panagopoulos 2025)
2013PallVGCC: 23件の研究「単純すぎる」3経路: IFO + RPM + Cyb5b
2025SousouriCACNA1C × 5G「サンプルが小さすぎる」遺伝的VGCC密度変異
2026Kim遺伝子スイッチ活性化「信じられないほど非現実的」導出済みχ_geo;条件付き応答形、組織カーネル未校正

いずれの場合も、経験的観察は強固であった — Cell、NeuroImage、Bioelectromagneticsなどの一流ジャーナルに掲載されることも多かった。批判はデータではなくメカニズムに向けられた:このような弱い電磁場がどうして生物学的影響を生じさせるのか? この「非現実性の議論」は科学的反論ではない — 「メカニズムがわからない」と「メカニズムが存在しない」を混同する無知からの論法である。

BERMはχ(Ā)を、これらの事例を整理し得る閉包候補として提案する。これはLindgrenが導出した感受性関数ではなく、幾何学から観測量への欠落した演算子もまだ与えない。膜電場の飽和と光子センサーの類推は、校正済みエンドポイントデータで検証すべきモデル論拠であり、確立した機構ではない。

認識論的レベル:導出済み幾何学と条件付き形式演算子;生物応答カーネルと校正は未解決。経験的所見は固有の証拠ラベルを保持する。

センチネルおよび種間エビデンス

Cross-Species Lag Indexは、地域的なアウトカム、測定されたFieldState、およびエンドポイント共変量を登録された種間テストで結合するための準備プロトコルである。

r = 0.84種間EMF勾配(7種)

定量可能な生殖低下率を持つ7種にわたり、低下率はEMF曝露スコアとr = 0.84で相関する。犬(Lea et al. 2016i):英国種犬で26年間にわたり精子−1.0%/年の低下、家庭のEMF曝露を共有。馬(Harris et al. 2023i):種馬の精子35年間にわたり−0.75%/年の低下。パターンはミツバチ、鳥類、カエル、水生種に及ぶ — それぞれが電磁環境に比例したタイムラインで低下。

種間の傾向は比較実験を動機づけますが、共有する化学物質、食事、疾病、繁殖歴も考慮が必要です。傾向だけではEMF原因やT–TFR遅延を特定できません。

メカニズム的アンカー

Kalmijn(J. Exp. Biol. 1971)iは、板鰓類(サメとエイ)がロレンチニ器官を通じて5 nV/cm(5 × 10⁻⁷ V/m)もの微弱な電場を確実に検出することを実証しました。この閾値はBERMが使用するIFO-VGIC感度レベルをはるかに下回ります — 脊椎動物の神経系は、現行の安全基準が生物学的に不活性と見なす強度でフィールドを処理します。

ロレンチニ器官はイオンチャネルのコンダクタンス変化を使用します — VGCC ゲートダイナミクスと物理的に類似しています。これはより敏感な動物の異なるメカニズムではありません;異なる組織で発現された同じメカニズム(弱い電場によるイオンチャネル摂動)です。10⁻⁵から10⁻⁷ V/mにおけるフィールド感度の系統発生的保存は「フィールドは生物学には弱すぎる」という異議を直接反論します。

板鰓類の電気受容は確立された感覚様式であり、議論の余地はありません。哺乳類のVGCC感度への外挿はBERMの解釈です — ロレンチニ器官はフィールド検出に最適化された形状を持つ特殊な感覚器官であり、哺乳類組織にはありません。

動物エビデンス:制御されたEMF実験

Rodriguez et al.(J. Reprod. Fert. 2003)iはマギル大学で制御された実験において乳牛の未経産牛を60 Hz EMF(10 kV/m、30 µT)に曝露しました。結果:メラトニンが低下(EMFが人工的な「長日」シグナルとして作用)、発情周期期間が延長(p < 0.01)、黄体期が延長(p < 0.01)。Burchard et al.(J. Dairy Sci. 2002)iは同じEMF曝露がIGF-1と乾物摂取量を増加させることを発見しました。

これは環境レベルのELF場が大型哺乳類の生殖内分泌学を変化させるという直接的な実験的証拠です。しかし乳牛は電化以来(~1950年代以降)安定した牛舎のELFに曝露されてきました。育種選択圧はEMF効果の~3桁大きいです。これが家畜がBERMセンチネルレジストリで負の対照として正しく分類される理由です — EMFは生物学的に活性ですが、選択がそれを覆い隠します。

漂遊電圧文献(不良配線からのミリアンペアの接触電流)は直交的です。Rodriguezは慢性的な場の曝露(µT)を測定し、急性接触電流(mA)ではありません。Rodriguez型の研究のみがBERMのメカニズム — 生殖内分泌学への慢性低レベルELF場効果 — を検証します。

Rodriguez/Burchard実験は明確な生物学的エンドポイントを持つ査読済み制御研究です。家畜の負の対照分類は集団レベルの減少検出に適用され(選択がシグナルを圧倒)、ELFが生物学的に活性かどうかには適用されません(活性です)。アーミッシュ対従来型酪農比較 — アーミッシュの牛舎はELFが低い — が次の有益なテストとなります。

バイオ電磁気学文献 2024–2026

Recent bioelectromagnetics studies (2024–2026) provide mechanistic refinement across BERM causal chain levels 3–6. Three priority sources strengthen the multi-pathway Ca²⁺ disruption model, add 5G-frequency-specific reproductive data, and quantify melatonin suppression. Two high-quality null results in skin cells support tissue-specificity rather than contradicting EMF effects.

Intracellular Ca²⁺ Store Mechanism (Bertagna 2025)

E

Bertagna et al. 2025 exposed mouse CA1 neurons to 50 Hz, 1 mT for 60 minutes and reported reduced inward and transient outward currents. Interfering with RyR release or SERCA reuptake removed those effects. This localizes a coupled calcium-store mechanism in the stated ELF setting. It motivates separate measurements of initial calcium, ER-store state and subsequent membrane current rather than two independent pathway weights.

5G Testicular ROS & CoQ10 Rescue (Bektas 2026)

C

Bektas et al. 2026 (Bioelectromagnetics) — Rats exposed to 3.5 GHz (5G core frequency). Testicular and oxidative damage observed. CoQ10 supplementation ameliorated damage — demonstrates mechanism reversibility, consistent with recovery window concept. First 5G-frequency-specific testicular data. Tissue-specific: same frequency shows no ROS in skin cells (cf. Meyer 2026, Haidar 2025).

Melatonin Suppression: PRISMA Systematic Review (Tbahriti 2026)

M|C

Tbahriti et al. 2026 (Sleep Biol Rhythms 24(2):195-214) — PRISMA 2020: 55 studies from 892 screened. 88% of high-quality animal studies report EMF-induced melatonin suppression (20–50% from baseline). Suppression smaller than light-induced (>90%), consistent with EMF as one component of nocturnal disruption. Limitation: only 27% of studies met high methodological standards.

Tissue-Specific Null Results

Meyer et al. 2026 (ELF 50 Hz, 200 µT, HaCaT keratinocytes — no DNA damage, p=0.644/0.987) and Haidar et al. 2025 (5G-modulated 3.5 GHz, SAR 0.08–4 W/kg, fibroblasts/keratinocytes — no ROS, no DNA damage). These null results motivate an imported L3 tissue-response candidate χ_tissue; they do not by themselves establish gonadal primacy, validate χ_geo, or identify the open L0→L2 mapping.

BBB Disruption via Tight Junction Degradation (Gao 2024)

C

Gao et al. 2024 (Bioelectromagnetics) — Electromagnetic pulse caused BBB breakdown through tight junction protein (occludin, claudin, ZO-1) degradation. Important: EMP (high-amplitude, short-duration) differs from chronic low-intensity RF. Mechanistic relevance: same molecular target as Salford 2003. Supports pathway E.

ホルメシスと生物学的活性化

Four independent research lines converge on a hormetic dose-response pattern: low electromagnetic exposure correlates with biological activation, while chronic high exposure correlates with suppression. The evidence spans experimental, genetic, epidemiological, and neuroendocrine domains.

実験的:低線量放射線ホルメシス

Low-dose ionizing radiation produces adaptive responses including enhanced DNA repair, mitochondrial activation, and immune stimulation. Liu (1989) documented testosterone increase and cortisol decrease in animal models. Kostyuk et al. (2021) demonstrated mitochondrial gene activation in human stem cells. Yang et al. (2016) showed ATM-mediated DNA repair activation in normal (not cancer) cells. Zhou et al. (2018) confirmed immune activation via NK cell expansion. These findings establish a hormetic framework: low-dose stress activates repair systems, while high-dose stress overwhelms them.

Ionizing-radiation adaptation anchors repair biology in its own dose class. RF preconditioning with an autophagy intervention supplies a closer field-specific comparison; the two exposures do not share an assumed dose scale.

遺伝的:DRD4/7R文脈依存的適応度

Eisenberg et al. (2008) studied DRD4/7R polymorphism in Ariaal pastoralists of northern Kenya (n=152). The same allele was associated with higher BMI (better nutritional status) in nomadic Ariaal but lower BMI in settled Ariaal. This gene-environment interaction is consistent with biological activation under low-infrastructure conditions and mismatch under settled conditions.

The observed genotype–environment association motivates a context-dependent functional model. Settlement and BMI do not measure a local electromagnetic dose or a genotype-specific field coefficient.

疫学的:牧畜民の定住健康勾配

Swanson et al. (2023) measured cardiometabolic indicators in semi-nomadic pastoralists in Kenya. Settlement was associated with worse blood pressure and BMI compared to more nomadic individuals within the same population. The settlement gradient isolates lifestyle change from genetic confounders.

神経内分泌:都市-郊外コルチゾール乖離

Mayagoitia-Novales et al. (2023) compared cortisol and testosterone responses between urban and suburban citizens. Urban citizens showed higher cortisol reactivity and altered testosterone response patterns. The urban environment is associated with heightened stress-axis activation.

Separate hormone amount from pulse timing and tissue receptivity. A prospective urban comparison should measure local fields, sleep, social stressors and the received endocrine response before assigning an environmental mechanism.

BERM represents beneficial adaptation, impaired reception and injury as distinguishable state trajectories. The sign is tested with baseline function, repair and a defined challenge; “hormesis” does not select the explanation after the outcome is known.

The Saturation Anomaly: fertility after diffusion is finished

M|C

A purely behavioural account of the fertility decline carries a testable ceiling. If the mechanism is that smartphones displaced the time in which conception happens, then once nearly everyone has one the displacement is complete, and the decline should level off. Diffusion is a bounded process; the effect it drives cannot outrun it. This is the sharpest available discriminator between an account that runs entirely through adoption and one that carries a component still accumulating after adoption stops.

Saturation is dated per country as the first year the model's smartphone penetration reaches 95% of its own 2024 ceiling — diffusion essentially complete relative to where that country ended up. Fifteen countries saturated at least five years before 2024. The response is the total fertility rate in the saturation year against 2024.

Total fertility rate after saturation

CountrySaturation yearTFR at saturationTFR 2024Change
South Korea20180.950.75−21.4%
Sweden20191.711.43−16.3%
Canada20191.481.25−15.3%
Denmark20191.701.47−13.4%
Japan20191.321.15−13.1%
Germany20191.541.36−11.7%
Australia20191.671.48−11.1%
Finland20191.351.25−7.5%
USA20181.721.63−5.1%
United Kingdom20191.631.55−5.0%
Singapore20180.950.97+2.4%

Eleven of the fifteen saturated countries are shown; the four omitted (Norway, Israel, Saudi Arabia, United Arab Emirates) all fall between −7.3% and −5.4%. Fourteen of fifteen declined, median −7.5%. Fertility rates are World Population Prospects values from the model's own annual panel.

The decline did not level off. Fourteen of the fifteen countries kept falling for five to six years after diffusion was effectively over, and South Korea — the earliest to saturate — fell fastest of all, more than a fifth in six years. The single exception is Singapore, which was already at 0.95 when it saturated and has held there since: a floor, not a recovery.

The dual-kernel framework reads this as the slow arm continuing after the fast one has run out of room. Cumulative exposure keeps rising once adoption stops, because usage intensity, simultaneous band count and night-time proximity all keep growing after the device count no longer can. The reading is consistent with the pattern but does not establish it: a behavioural account with a stock adjustment — intensity rising after ownership saturates, or cohorts entering with a lifetime of exposure behind them — predicts a post-saturation decline as well, and this test does not separate the two.

Mechanistic reading plus population-level association. The pattern is measured across fifteen countries; alternative explanations are not excluded.

The Fertility Gap as a measurement of the slow arm

M

There is a second discriminator, cleaner in principle than the saturation test. Displacement and capacity make opposite predictions about what people say they want. If the mechanism is that time and partnering were displaced, intended family size should fall alongside realised fertility — people who are not partnering do not plan the children they are not having. If the mechanism is that reproductive capacity declined, intention should hold while realisation falls, and the gap between them should widen with cumulative exposure.

The gap is therefore the framework's most direct proposed handle on the slow kernel: a quantity that separates wanting from achieving, measured on the same populations that carry the exposure history. Its growth rate rather than its level is the estimand, because the level is confounded by everything that has always separated stated ideals from outcomes.

The model does not yet hold this series. Realised fertility comes from the annual panel already in the repository; intended and ideal family size do not, and would have to be assembled from Eurobarometer, the World Values Survey and the Demographic and Health Surveys, which use different instruments and different age ranges. Until that series exists the fertility gap is a specified test with no result, and nothing here should be read as reporting one.

Mechanistic intermediate. The reasoning is specified; the measurement has not been made.

遡及予測:モジュロームが説明すること

6つの生物学的アウトカムは、12層のモジュロームを過去のデータで検証する機会を提供します。提案された収束は共通原因の仮説です。各アウトカムには明確な曝露指標、比較群、競合する説明の評価が必要です。カードでは観察、提案された機構、検証可能な予測を区別します。

これらのアウトカムの統計的独立性は確立していません。証拠を統合する前に、共有データ、選択、交絡を評価する必要があります。ここでは共同確率を割り当てず、提案されたEMF経路には直接的な検証が必要です。

慢性疾患カスケード

7つの疾患、4つのEMFチャネル、1つのカスケード論理 — 各メカニズムは少なくとも1つのFDA認可治療機器で検証済み。

疾患発生率(1990 = 100)

技術導入 — 4つの周波数チャネル

  • COVID · 2020–2022
  • IF ↓70%
  • RF ↑40%
501502002503003501990 = 100STATIC (DC)Synth. clothing: 1990–2026ELF (<300 Hz)50/60 Hz grid: 1950–2026EV (ELF+IF): 2015–2026IF (300 Hz–10 MHz)SMPS: 1995–2026HVAC VFD: 2000–2026Induction: 2005–2026LED (EU): 2009–2026RF (>10 MHz)2G: 1991–2005Wi-Fi: 1999–20263G: 2001–2012Smartphone: 2007–20264G: 2009–2026TWS: 2016–20265G: 2019–202629023022118717917212819751980198519901995200020052010201520202025

STATIC (DC)

  • Synth. clothing · 19902026

ELF (<300 Hz)

  • 50/60 Hz grid · 19502026
  • EV (ELF+IF) · 20152026

IF (300 Hz–10 MHz)

  • SMPS · 19952026
  • HVAC VFD · 20002026
  • Induction · 20052026
  • LED (EU) · 20092026

RF (>10 MHz)

  • 2G · 19912005
  • Wi-Fi · 19992026
  • 3G · 20012012
  • Smartphone · 20072026
  • 4G · 20092026
  • TWS · 20162026
  • 5G · 20192026

疾患の線またはレジェンド項目をクリックして詳細を表示

モジュロームの予測: モジュロームの予測:1つの根本原因(4チャネルにわたる慢性EMF曝露)が、異なる組織で異なる潜時をもつ7つの疾患カスケードを生み出す。カスケード順序はモジュロームの12の生物学的レベルに従う:松果体層での最速応答(睡眠)、臓器層での最遅応答(累積的脱分極 → がん)。各メカニズムは少なくとも1つのFDA認可治療機器で検証済み。このカスケード順序は睡眠研究者Matthew Walker(UC Berkeley)iによって独立に記録されている。睡眠障害は、メタボリックシンドローム、うつ病、心血管疾患、がんという同じ疾患系列を、モジュロームの組織固有の再生速度が予測するのと同じ生物学的順序で生じさせる。WalkerはこのカスケードをEMFの枠組みなしに睡眠不足に帰する。BERMは、慢性EMF曝露がWalkerのカスケードを駆動する睡眠不足の上流原因であると提案する。

トレンド指数はGBD 2023(IHME/OWID)および公表済みGBD推定値(1990 = 100)から。うつ病はOWID/GBD直接データを使用。他の疾患は公表済みGBD有病率推定値を線形補間で使用。加速点は移動平均の二次導関数(ウィンドウ=5)で算出。点線垂直線 = 統計的加速点。斜線 = BERMが予測する技術関連 + 遅延。

BERM-Eco: 新たな淘汰圧としての差異的電磁感受性

EMFモジュロームはすべての種に均等に影響するわけではない。各種の「モジュロームプロファイル」— どのイオンチャネル、どのセンサー、どの体サイズ、どの細胞分裂速度 — が、変化した電磁環境にどう応答するかを決定する。重要な生物学的プロセスが電磁感知(ナビゲーション、概日調節、静電気コミュニケーション)に依存する種は、生存戦略が化学的または機械的な種よりも脆弱である。

ミツバチはナビゲーションに磁気受容、花粉収集に静電気感知、衛生行動に嗅覚、コロニー調整に概日調節を利用する — すべて電磁的に媒介される。Varroa destructorは化学的宿主発見、摂食のための唾液キチナーゼに依存し、硬いスクレロチン外骨格で保護されている。EMFは宿主を弱体化させるが寄生虫には影響しない。この差異がEMF耐性寄生虫をEMF感受性宿主の犠牲において有利にする新たな淘汰圧を生み出す。

ダニは静電的な宿主接触を利用する(England 2023, Current Biologyi)。これは物理的場環境の変化を検証するBERM試験を動機づける。FieldStateは条件を測定するだけで、生物学的機構や生態学的結果を導出しない。捕食者、生息地、気候、宿主密度の代替説明も同時に検証する。

種別モジュロームプロファイル

生物EM感受性主要メカニズムEMF効果
ミツバチ★★★★★CRY/RPM、静電気感知弱体化
渡り鳥★★★★★CRY/RPMコンパス方向喪失
コウモリ★★★★磁気コンパス方向喪失
★★★★GHz共鳴吸収増加
ヒト★★★★★VGCC, CRY, VNS慢性疾患
ヘギイタダニ★★★★化学的防護
マダニ★★★★静電気利益の可能性

感受性評価は既知のメカニズムと体制物理学に基づくBERM-Eco推定 [H] であり、測定された差異値ではない。個々のメカニズムの引用は独自のエビデンスレベルを持つ(参考文献参照)。

LEGACY_TIMING_PROXY

アーカイブ済みスカラーヒンドキャスト

以前のヒンドキャストは、遅い観測点で較正されたスカラーv17プロキシを同じ国別時系列に遡って適用しました。方法論の記録としてのみ保持され、BERM v17の検証結果としては提示されません。

数値表示が取り下げられた理由

  • 入力は技術タイミングと仮定された曝露プロキシであり、測定されたローカルFieldStateや臓器移転ではありませんでした。
  • スカラーの生物学的容量およびTFR軌道はモデル化された量であり、独立に観察されたエンドポイントではありませんでした。
  • 遅い較正点からの逆方向フィッティングは、外部的にロックされた予測でも識別戦略でもありません。

必要な代替手法

v2の時間的検証は、評価前にFieldState測定値と生物学的/ASFRエンドポイントをロックし、需要・テンポ・ARTパスを個別に報告し、事前定義された人口統計学的ベースラインと比較する必要があります。

BERM v17

Statistical status and validation boundary

BERM v17 separates a descriptive timing pattern, a biological endpoint and a population effect. The validation status states what is required to test the active route.

DESCRIPTIVE COHORT SIGNAL

ASFR cohort-route readiness

V2 does not publish age-specific country forecasts until measured FieldState, an organ-specific biological endpoint, couple state and ASFR can be joined on the same cohort-time axis.

Descriptive finding: WPP 2024 ASFR + World Bank/ITU mobile subscriptions, 2000–2023, N = 163, Pearson r = −0.66645 between a young-minus-older cohort timing proxy and ASFR change.

The result is not FieldState, exposure dose, a biological effect estimate or a TFR coefficient. Region, income and demographic structure remain material alternative explanations.

Next analysis: a preregistered matched panel collecting FieldState and biomarkers before evaluating the ASFR endpoint.

What v2 validation requires

  1. 01A pre-specified measured FieldState: B₀, spectrum/PSD, phase/coherence, position, organ transfer and provenance.
  2. 02A registered organ-specific endpoint and parameters with visible directness and translation scope.
  3. 03Couple state plus age-specific ASFR, with demand, tempo and ART terms reported separately.
  4. 04An externally locked temporal prediction or replication; TFR is derived only after ASFR.

グローバルパネルデータカバレッジ

公開された国別パネルは、BERM v17研究プログラムに現在利用可能な人口統計および技術タイミングデータを文書化する。

パネルメタデータを読み込み中…

次のv2データ追加

測定されたFieldState入力、追跡可能な臓器/カップルエンドポイント、互換性のある時間軸で収集された年齢別出生率成果の国別パネル。