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在温暖、潮湿环境下进行高强度骑行时神经肌肉疲劳的证据。

Evidence for neuromuscular fatigue during high-intensity cycling in warm, humid conditions.

作者信息

Kay D, Marino F E, Cannon J, St Clair Gibson A, Lambert M I, Noakes T D

机构信息

Human Movement Studies Unit and Human Performance Laboratory, Charles Sturt University, Bathurst NSW 2795, Australia.

出版信息

Eur J Appl Physiol. 2001 Jan-Feb;84(1-2):115-21. doi: 10.1007/s004210000340.

Abstract

The purpose of this study was to examine and describe the neuromuscular changes associated with fatigue using a self-paced cycling protocol of 60-min duration, under warm, humid conditions. Eleven subjects [mean (SE) age 21.8 (0.8) years; height 174.9 (3.0) cm; body mass 74.8 (2.7) kg; maximum oxygen consumption 50.3 (1.8) ml.kg.min-1] performed one 60-min self-paced cycling time trial punctuated with six 1-min "all out" sprints at 10-min intervals, while 4 subjects repeated the trial for the purpose of determining reproducibility. Power output, integrated electromyographic signal (IEMG), and mean percentile frequency shifts (MPFS) were recorded at the mid-point of each sprint. There were no differences between trials for EMG variables, distance cycled, mean heart rate, and subjective rating of perceived exertion for the subjects who repeated the trial (n = 4). The results from the repeated trials suggest that neuromuscular responses to self-paced cycling are reproducible between trials. The mean heart rate for the 11 subjects was 163.6 (0.71) beats.min-1. Values for power output and IEMG expressed as a percentage of that recorded for the initial sprint decreased during sprints 2-5, with normalised values being 94%, 91%, 87% and 87%, respectively, and 71%, 71%, 73%, and 77%, respectively. However, during the final sprint normalised power output and IEMG increased to 94% and 90% of initial values, respectively. MPFS displayed an increase with time; however, this was not significant (P = 0.06). The main finding of this investigation is the ability of subjects to return power output to near initial values during the final of six maximal effort sprints that were included as part of a self-paced cycling protocol. This appears to be due to a combination of changes in neuromuscular recruitment, central or peripheral control systems, or the EMG signal itself. Further investigations in which changes in multiple physiological systems are assessed systematically are required so that the underlying mechanisms related to the development of fatigue during normal dynamic movements such as cycling can be more clearly delineated.

摘要

本研究的目的是在温暖、潮湿的条件下,采用持续60分钟的自定节奏骑行方案,检测并描述与疲劳相关的神经肌肉变化。11名受试者[平均(标准误)年龄21.8(0.8)岁;身高174.9(3.0)厘米;体重74.8(2.7)千克;最大耗氧量50.3(1.8)毫升·千克·分钟⁻¹]进行了一次60分钟的自定节奏骑行计时赛,期间每隔10分钟穿插进行6次1分钟的“全力”冲刺,同时4名受试者重复该试验以确定可重复性。在每次冲刺的中点记录功率输出、积分肌电信号(IEMG)和平均百分频率偏移(MPFS)。对于重复试验的受试者(n = 4),肌电变量、骑行距离、平均心率和主观用力感觉评分在各次试验之间没有差异。重复试验的结果表明,自定节奏骑行的神经肌肉反应在各次试验之间具有可重复性。11名受试者的平均心率为163.6(0.71)次·分钟⁻¹。在第2 - 5次冲刺期间,以第一次冲刺记录值的百分比表示的功率输出和IEMG值下降,标准化值分别为94%、91%、87%和87%,以及71%、71%、73%和77%。然而,在最后一次冲刺期间,标准化功率输出和IEMG分别增加到初始值的94%和90%。MPFS随时间增加;然而,这并不显著(P = 0.06)。本研究的主要发现是,在作为自定节奏骑行方案一部分的6次最大强度冲刺的最后阶段,受试者能够将功率输出恢复到接近初始值。这似乎是由于神经肌肉募集、中枢或外周控制系统或肌电信号本身的变化共同作用的结果。需要进一步开展系统评估多种生理系统变化的研究,以便更清楚地阐明与骑自行车等正常动态运动过程中疲劳发展相关的潜在机制。

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