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咖啡因对非疲劳状态及疲劳运动期间神经肌肉功能的影响。

Effects of caffeine on neuromuscular function in a non-fatigued state and during fatiguing exercise.

作者信息

Mesquita Ricardo N O, Cronin Neil J, Kyröläinen Heikki, Hintikka Jukka, Avela Janne

机构信息

School of Medical and Health Sciences, Edith Cowan University, Perth, WA, Australia.

Neuromuscular Research Center, Faculty of Sport and Health Sciences, University of Jyväskylä, Jyväskylä, Finland.

出版信息

Exp Physiol. 2020 Apr;105(4):690-706. doi: 10.1113/EP088265. Epub 2020 Mar 13.

Abstract

NEW FINDINGS

What is the central question of the study? What are the effects of caffeine on neuromuscular function in a non-fatigued state and during fatiguing exercise? What is the main finding and its importance? In a non-fatigued state, caffeine decreased the duration of the silent period evoked by transcranial magnetic stimulation. Caffeine-induced reduction of inhibitory mechanisms in the central nervous system before exercise was associated with an increased performance. Individuals who benefit from caffeine ingestion may experience lower perception of effort during exercise and an accelerated recovery of M-wave amplitude postfatigue. This study elucidates the mechanisms of action of caffeine and demonstrates that inter-individual variability of its effects on neuromuscular function is a fruitful area for further work.

ABSTRACT

Caffeine enhances exercise performance, but its mechanisms of action remain unclear. In this study, we investigated its effects on neuromuscular function in a non-fatigued state and during fatiguing exercise. Eighteen men participated in this randomized, double-blind, placebo-controlled crossover trial. Baseline measures included plantarflexion force, drop jump, squat jump, voluntary activation of triceps surae muscle, soleus muscle contractile properties, M-wave, α-motoneuron excitability (H-reflex), corticospinal excitability, short-interval intracortical inhibition, intracortical facilitation, silent period evoked by transcranial magnetic stimulation (SP) and plasma potassium and caffeine concentrations. Immediately after baseline testing, participants ingested caffeine (6 mg·kg ) or placebo. After a 1-h rest, baseline measures were repeated, followed by a fatiguing stretch-shortening cycle exercise (sets of 40 bilateral rebound jumps on a sledge apparatus) until task failure. Neuromuscular testing was carried out throughout the fatigue protocol and afterwards. Caffeine enhanced drop jump height (by 4.2%) and decreased the SP (by 12.6%) in a non-fatigued state. A caffeine-related decrease in SP and short-interval intracortical inhibition before the fatiguing activity was associated with an increased time to task failure. The participants who benefitted from an improved performance on the caffeine day reported a significantly lower sense of effort during exercise and had an accelerated postexercise recovery of M-wave amplitude. Caffeine modulates inhibitory mechanisms of the CNS, recovery of M-wave amplitude and perception of effort. This study lays the groundwork for future examinations of differences in caffeine-induced neuromuscular changes between those who are deemed to benefit from caffeine ingestion and those who are not.

摘要

新发现

该研究的核心问题是什么?咖啡因在非疲劳状态和疲劳运动期间对神经肌肉功能有何影响?主要发现及其重要性是什么?在非疲劳状态下,咖啡因缩短了经颅磁刺激诱发的静息期时长。运动前咖啡因引起的中枢神经系统抑制机制减弱与运动表现提高相关。摄入咖啡因有益的个体在运动过程中可能会感觉用力程度降低,且疲劳后M波振幅恢复加快。本研究阐明了咖啡因的作用机制,并表明其对神经肌肉功能影响的个体间差异是一个值得进一步研究的富有成果的领域。

摘要

咖啡因可提高运动表现,但其作用机制尚不清楚。在本研究中,我们调查了其在非疲劳状态和疲劳运动期间对神经肌肉功能的影响。18名男性参与了这项随机、双盲、安慰剂对照的交叉试验。基线测量包括跖屈力、纵跳、深蹲跳、比目鱼肌自愿激活、比目鱼肌收缩特性、M波、α运动神经元兴奋性(H反射)、皮质脊髓兴奋性、短间隔皮质内抑制、皮质内易化、经颅磁刺激诱发的静息期(SP)以及血浆钾和咖啡因浓度。在基线测试后,参与者立即摄入咖啡因(6毫克/千克)或安慰剂。休息1小时后,重复基线测量,然后进行疲劳性拉长-缩短周期运动(在雪橇装置上进行40组双侧反弹跳)直至任务失败。在整个疲劳方案期间及之后进行神经肌肉测试。在非疲劳状态下,咖啡因提高了纵跳高度(提高了4.2%)并缩短了静息期(缩短了12.6%)。疲劳活动前与咖啡因相关的静息期缩短和短间隔皮质内抑制减弱与任务失败时间延长相关。在摄入咖啡因当天运动表现得到改善的参与者在运动过程中报告称用力感明显降低,且运动后M波振幅恢复加快。咖啡因调节中枢神经系统的抑制机制、M波振幅恢复和用力感。本研究为未来研究摄入咖啡因有益和无益的个体之间咖啡因诱导的神经肌肉变化差异奠定了基础。

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