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高于最大摄氧量(VO2max)的跑步速度下的摄氧量(VO2)反应。

VO2 responses to running speeds above VO2max.

作者信息

Duffield R, Bishop D

机构信息

School of Human Movement, Charles Sturt University, Bathurst, Australia.

出版信息

Int J Sports Med. 2008 Jun;29(6):494-9. doi: 10.1055/s-2007-989230. Epub 2007 Nov 14.

Abstract

This study compared VO2, heart rate (HR) and electromyographic (iEMG) responses to speeds above the velocity associated with VO2max (v-VO2max). Eight male, middle-distance runners performed a graded exercise test to determine VO2max and v-VO2max and runs to fatigue at 100 % and 110 % v-VO2max. Breath-by-breath VO2 and HR were continuously recorded; lactate [La (-)] measured pre- and post-run and iEMG measures of rectus femoris (RF) and vastus lateralis were recorded during the first and last 20 s of each run. Analysis indicated longer time to fatigue in the 100 % v-VO2max run with no differences between conditions for VO2 or HR amplitudes or post-run [La (-)] (p > 0.05). There were significantly faster tau values (p < 0.05) in the 110 % condition in VO2 and HR. No significant correlations were observed between VO2 or HR tau values and time to fatigue. RF iEMG was significantly larger in 110 % compared to 100 % run in the first 20 s (p < 0.05). While no association between treadmill performance and VO2 response was evident, faster running speeds resulted in faster VO2 and HR responses, with no difference in amplitude or % VO2max attained. This may potentially be as a result of an increased muscle fibre recruitment stimulus during the faster running velocity resulting in faster cardiodynamic responses.

摘要

本研究比较了高于与最大摄氧量(v-VO2max)相关速度时的最大摄氧量(VO2)、心率(HR)和肌电图(iEMG)反应。八名男性中长跑运动员进行了递增运动试验以确定VO2max和v-VO2max,并在100%和110% v-VO2max速度下进行疲劳跑。逐次呼吸记录VO2和HR;在每次跑步的前、后测量乳酸[La(-)],并在每次跑步的前20秒和后20秒记录股直肌(RF)和股外侧肌的iEMG测量值。分析表明,在100% v-VO2max跑步中疲劳时间更长,VO2、HR幅度或跑步后[La(-)]在各条件之间无差异(p>0.05)。在110%条件下,VO2和HR的时间常数(tau)值显著更快(p<0.05)。未观察到VO2或HR的tau值与疲劳时间之间存在显著相关性。在最初20秒内,110%跑步时的RF iEMG显著大于100%跑步时(p<0.05)。虽然跑步机表现与VO2反应之间没有明显关联,但更快的跑步速度导致VO2和HR反应更快,达到的幅度或VO2max百分比没有差异。这可能是由于在更快的跑步速度下肌肉纤维募集刺激增加,导致心脏动力学反应更快。

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