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The Effects of Caffeine Supplementation on Physiological Responses to Submaximal Exercise in Endurance-Trained Men.

持久系トレーニングを積んだ男性におけるカフェイン補給が最大下運動時の生理的反応に及ぼす影響 (機械翻訳の邦題)

PloS one2016Glaister M, Williams BH, Muniz-Pumares D, et al.
研究デザインランダム化比較試験
対象ヒト

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
2016
出典
doi.org
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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、持久系トレーニングを積んだ男性16名を対象に、カフェイン摂取が最大下運動時の生理的反応に及ぼす影響を検討した。無作為化単盲検クロスオーバー試験で、カフェインまたはプラセボを摂取し、6段階の漸増運動試験と30分の回復期を実施した。その結果、カフェインは運動中の血中乳酸濃度を運動強度に関係なく増加させたが、回復期の血中乳酸濃度の時間経過には影響しなかった。また、カフェインは運動中の主観的運動強度と心拍数を低下させ、心拍数への影響は運動強度が高くなると消失した。呼吸交換比と分時換気量には、摂取と運動強度の交互作用が認められた。これらの結果から、カフェインは最大下運動時の生理的反応に明確ではあるがしばしば微妙な影響を及ぼすことが示された。

この要約は公開抄録のみを根拠にAIが機械的に生成したものです。正確な内容は原文を確認してください。

抄録

Objectives: The aim of this study was to evaluate the effects of caffeine on physiological responses to submaximal exercise, with a focus on blood lactate concentration ([BLa]).Methods: Using a randomised, single-blind, crossover design; 16 endurance-trained, male cyclists (age: 38 ± 8 years; height: 1.80 ± 0.05 m; body mass: 76.6 ± 7.8 kg; [Formula: see text]: 4.3 ± 0.6 L∙min-1) completed four trials on an electromagnetically-braked cycle ergometer. Each trial consisted of a six-stage incremental test (3 minute stages) followed by 30 minutes of passive recovery. One hour before trials 2-4, participants ingested a capsule containing 5 mg∙kg-1 of either caffeine or placebo (maltodextrin). Trials 2 and 3 were designed to evaluate the effects of caffeine on various physiological responses during exercise and recovery. In contrast, Trial 4 was designed to evaluate the effects of caffeine on [BLa] during passive recovery from an end-exercise concentration of 4 mmol∙L-1.Results: Relative to placebo, caffeine increased [BLa] during exercise, independent of exercise intensity (mean difference: 0.33 ± 0.41 mmol∙L-1; 95% likely range: 0.11 to 0.55 mmol∙L-1), but did not affect the time-course of [BLa] during recovery (p = 0.604). Caffeine reduced ratings of perceived exertion (mean difference: 0.5 ± 0.7; 95% likely range: 0.1 to 0.9) and heart rate (mean difference: 3.6 ± 4.2 b∙min-1; 95% likely range: 1.3 to 5.8 b∙min-1) during exercise, with the effect on the latter dissipating as exercise intensity increased. Supplement × exercise intensity interactions were observed for respiratory exchange ratio (p = 0.004) and minute ventilation (p = 0.034).Conclusions: The results of the present study illustrate the clear, though often subtle, effects of caffeine on physiological responses to submaximal exercise. Researchers should be aware of these responses, particularly when evaluating the physiological effects of various experimental interventions.

MeSH

AthletesBicyclingCaffeineCentral Nervous System StimulantsCross-Over StudiesDietary SupplementsErgometryExerciseExercise TestHeart RateHumansLactic AcidMaleOxygen ConsumptionPerceptionPhysical EndurancePhysical ExertionPlacebosSingle-Blind Method

DOI 10.1371/journal.pone.0161375

PMID 27532605

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