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离心收缩后更快的摄氧量动力学可通过氧输送与氧利用的更好匹配来解释。

Faster VO(2) kinetics after eccentric contractions is explained by better matching of O(2) delivery to O(2) utilization.

作者信息

Nederveen Joshua P, Major Brendan, Paterson Donald H, Murias Juan M

机构信息

Canadian Centre for Activity and Aging, The University of Western Ontario, London, ON, Canada.

出版信息

Eur J Appl Physiol. 2014 Oct;114(10):2169-81. doi: 10.1007/s00421-014-2937-3. Epub 2014 Jun 29.

Abstract

PURPOSE

This study examined the impact of eccentric exercise-induced muscle damage on the rate of adjustment in muscle deoxygenation and pulmonary O2 uptake (VO(2p)) kinetics during moderate exercise.

METHODS

Fourteen males (25 ± 3 year; mean ± SD) completed three step transitions to 90 % θL before (Pre), 24 h (Post24) and 48 h after (Post48) eccentric exercise (100 eccentric leg-press repetitions with a load corresponding to 110 % of the participant's concentric 1RM). Participants were separated into two groups: phase II VO(2p) time constant (τVO(2p)) ≤ 25 s (fast group; n = 7) or τVO(2p) > 25 s (slow group; n = 7). VO(2p) and [HHb] responses were modeled as a mono-exponential.

RESULTS

In both groups, isometric peak torque (0°/s) at Post24 was decreased compared to Pre (p < 0.05) and remained depressed at Post48 (p < 0.05). τVO(2p) was designed to be different (p < 0.05) at Pre between the Fast (τVO(2p); 19 ± 4 s) and Slow (32 ± 6 s) groups. There were no differences among time points (τVO(2p): Pre, 19 ± 4 s; Post24, 22 ± 3 s; Post48, 20 ± 4 s) in the Fast group. In Slow, there was a speeding (p < 0.05) from the Pre (32 ± 6 s) to the Post24 (25 ± 6) but not Post48 (31 ± 6), resulting in no difference (p > 0.05) between groups at Post24. This reduction of τVO(2p) was concomitant with the abolishment (p < 0.05) of an overshoot in the [HHb]/VO(2p) ratio.

CONCLUSION

We propose that the sped VO(2p) kinetics observed in the Slow group coupled with an improved [HHb]/VO(2p) ratio suggest a better matching of local muscle O2 delivery to O2 utilization following eccentric contractions.

摘要

目的

本研究探讨了离心运动诱导的肌肉损伤对中等强度运动期间肌肉脱氧速率和肺摄氧量(VO₂p)动力学调整速率的影响。

方法

14名男性(25±3岁;平均值±标准差)在离心运动前(Pre)、运动后24小时(Post24)和48小时(Post48)完成了三次向90%θL的阶梯过渡(100次离心腿举重复动作,负荷相当于参与者向心1RM的110%)。参与者被分为两组:II期VO₂p时间常数(τVO₂p)≤25秒(快速组;n = 7)或τVO₂p>25秒(慢速组;n = 7)。VO₂p和[HHb]反应被模拟为单指数形式。

结果

在两组中,Post24时的等长峰值扭矩(0°/s)与Pre相比均降低(p < 0.05),且在Post48时仍处于较低水平(p < 0.05)。快速组(τVO₂p;19±4秒)和慢速组(32±6秒)在Pre时的τVO₂p设计为不同(p < 0.05)。快速组在各时间点(τVO₂p:Pre,19±4秒;Post24,22±3秒;Post48,20±4秒)之间无差异。在慢速组中,从Pre(32±6秒)到Post24(25±6秒)有加速(p < 0.05),但到Post48(31±6秒)时没有,导致两组在Post24时无差异(p > 0.05)。这种τVO₂p的降低与[HHb]/VO₂p比值过冲的消除(p < 0.05)同时发生。

结论

我们提出,在慢速组中观察到的VO₂p动力学加速以及[HHb]/VO₂p比值的改善表明,离心收缩后局部肌肉氧输送与氧利用的匹配更好。

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