Caffeine Combined with Excitatory Neuromodulation Based on Transcranial Direct Current Stimulation (tDCS) Enhances Performance in a Time-Trial CrossFit<sup>®</sup> Workout: A Randomized, Placebo-Controlled, Double-Blind Study.
カフェインと経頭蓋直流電気刺激(tDCS)に基づく興奮性神経調節の併用は、タイムトライアルのクロスフィット®ワークアウトのパフォーマンスを向上させる:無作為化プラセボ対照二重盲検試験 (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- ランダム化比較試験
- 対象
- ヒト
- 出版年
- 2025
- 出典
- doi.org
- 抄録の表示
- 表示あり
- 出版状態
- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/03
- 鮮度
- 確認期限内
- 確認段階
- 自動処理
- 記録状態
- 公開
日本語要約(機械生成)
本研究は、競技クロスフィット選手を対象に、カフェイン摂取と経頭蓋直流電気刺激(tDCS)の併用が、ベンチマークワークアウト「GRACE」におけるクリーン&ジャークのパフォーマンス時間に及ぼす影響を検証した無作為化二重盲検プラセボ対照クロスオーバー試験である。20名の参加者が、カフェイン+陽極tDCS、カフェイン+偽tDCS、プラセボ+陽極tDCS、プラセボ+偽tDCSの4条件を実施した。その結果、カフェイン+陽極tDCS条件は他の条件と比較して有意に実行時間を短縮した(205.5秒 vs 218.3秒、231.7秒、240.9秒)。一方、カフェイン+偽tDCSとプラセボ+陽極tDCSの間に有意差はなく、単独使用の効果は限定的であった。また、主観的運動強度(RPE)に条件間の差はなく、パーソナルレコードと実行時間の相関も認められなかった。これらの結果から、tDCSとカフェインの併用は高強度機能トレーニングのパフォーマンス向上に有効な可能性が示唆された。
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抄録
Background: Caffeine (CAF) and transcranial direct current stimulation (tDCS) are ergogenic strategies with potential benefits for performance, yet their combined effects remain underexplored, particularly in high-intensity functional training contexts such as CrossFit®. This randomized, double-blind, placebo-controlled crossover study aimed to investigate the impact of tDCS, with and without CAF, on performance time in the Clean & Jerk (C&J) during the benchmark WOD GRACE among competitive CrossFit® athletes. Secondarily, we aimed to compare the RPE across the different experimental conditions, as well as to establish the relationship between personal record (PR) values adjusted for body mass and the execution time of the WOD GRACE, considering different athletes' classification levels (RX Elite and RX Intermediate).Methods: Twenty participants completed four experimental conditions: CAF ingestion (400 mg) combined with anodal tDCS (CAF + a-tDCS), CAF with Sham tDCS (CAF + Sham-tDCS), placebo (PLA) with a-tDCS (PLA + a-tDCS), and PLA with Sham tDCS (PLA + Sham-tDCS).Results: The results indicated that the combination of CAF + a-tDCS significantly improved performance, reducing execution time (205.5 ± 58.0 s) compared to CAF + Sham-tDCS (218.3 ± 61.2 s; p = 0.034), PLA + a-tDCS (231.7 ± 64.1 s; p = 0.012), and PLA + Sham-tDCS (240.9 ± 66.4 s; p = 0.002). However, no significant differences were observed between CAF + Sham-tDCS and PLA + a-tDCS (p = 0.690), CAF + Sham-tDCS and PLA + Sham-tDCS (p = 0.352), or PLA + a-tDCS and PLA + Sham-tDCS (p = 0.595).Conclusions: The responder analysis revealed that 45% of participants improved performance with isolated tDCS, while 60% responded positively to CAF. No significant differences were found in RPE scores among conditions (p = 0.145). Additionally, no correlations were identified between PR values adjusted for body mass and execution time in both RX Elite (r = 0.265; p = 0.526) and RX Intermediate (r = 0.049; p = 0.901) groups, nor between training experience and performance across interventions. These findings suggest that tDCS, when combined with CAF, may serve as an effective ergogenic aid for improving performance in high-intensity functional training, whereas its isolated use does not yield meaningful benefits.
MeSH
DOI 10.3390/nu17071261
PMID 40219021
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