The Effects of Chronic Branched-Chain Amino Acid Supplementation on Running Kinematics: Single Case Research
慢性分岐鎖アミノ酸補給がランニング動作に及ぼす影響:単一事例研究 (機械翻訳の邦題)
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- 2026/08/17
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- 2026/08/03
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本研究は、訓練されたウルトラ持久走者1名を対象に、慢性分岐鎖アミノ酸(BCAA)補給がランニング動作に及ぼす影響を検討した。被験者は、50マイルレースに向けて、主要なトレーニングの前後にBCAA飲料またはプラセボを摂取する10日間のサイクルを3回実施した。各サイクルで5km走を行い、ビデオ解析により接地時間、滞空時間、上下動を測定した。その結果、上下動はプラセボ条件の88mmからBCAA条件では76mmへ有意に減少した(p=0.00)。接地時間と滞空時間には有意差は認められなかった。BCAA補給はランニング動作の総合的な改善に11%の効果を示した(p=0.04)。上下動の減少は、無駄な垂直方向の動きの低減を示し、筋回復の改善による疲労軽減が効率的な動作につながった可能性が示唆された。
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Abstract
Purpose: To monitor the effects of chronic branched-chain amino acid (BCAA) supplementation on running kinematics in a trained ultra-endurance runner. Methods: One well-trained ultra-endurance runner followed three 10-day cycles of an AB design consuming a BCAA drink (SUP) or placebo (PLA) surrounding daily key workouts leading up to a 50-mile race (dosage = 0.08g/kg/day = 3.52g BCAA/day and 10.32g AA/day). During each 10-day cycle, the athlete completed a 5km run on an outdoor track at 6:30min/mile pace. A 10-meter capture zone was measured and marked with two orange cones for video recording and analysis. Kinovea open-source software (Version 0.8.15) was used to measure running kinematic variables: ground contact time (GCT), flight time (FT), and vertical oscillation (VO). Results: Vertical oscillation (VO) during a constant-pace run was significantly reduced from 88mm to 76mm when athlete was on SUP vs PLA condition (p = 0.00, Tau-U = 0.40). Statistical significance was not achieved for differences in GCT and FT between SUP and PLA (p = 0.06, Tau-U = 0.-17 and p = 0.28, Tau-U = 0.10 for GCT and FT, respectively). Weighted Tau-U results suggest that the BCAA supplement was overall 11% effective in improving combined measures of running kinematics (p = 0.04, Tau-U = 0.11). Discussion: A decrease in VO can indicate less overall muscle support requirements during stance phase and a reduced aerobic demand for a given task. We observed decreased VO during the 5km running tests on SUP indicating a reduction in wasteful vertical motion. Possible explanations for this could relate to improvement in muscle recovery characteristics from increased availability of BCAAs resulting in less chronic fatigue. Less fatigue can allow greater coactivation between two-joint muscles of the leg during stance resulting in more efficient joint rotations that are transferred into desired external forces, promoting more efficient movement and a more economical runner.
DOI 10.21203/rs.3.rs-80714/v1
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