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离心训练后长短肌肉长度下的疲劳与恢复

Fatigue and recovery at long and short muscle lengths after eccentric training.

作者信息

Willems Mark E T, Stauber William T

机构信息

Department of Physiology and Pharmacology, West Virginia University, Morgantown, 26506-9229, USA.

出版信息

Med Sci Sports Exerc. 2002 Nov;34(11):1738-43. doi: 10.1097/00005768-200211000-00008.

Abstract

PURPOSE

To determine the effects of high-speed eccentric training of rat plantar flexor muscles on: 1) maximum (120 Hz) force at 90 degrees ankle position; 2) fatigue (40 concentric muscle actions, ROM 50 degrees) and recovery (6 concentric muscle actions) tested at short or long muscle lengths; and 3) low-frequency fatigue.

METHODS

Training consisted of eccentric muscle actions from ankle positions of 140 degrees to 40 degrees (velocity approximately 400 degrees x s(-1)) followed by unresisted concentric muscle actions (5 x 10 repetitions, 5 d x wk(-1) for 6 wk). Fatigue was induced by concentric muscle actions with a rest of 12.5 s between muscle actions, and recovery consisted of equivalent concentric muscle actions performed every 5 min for 30 min. Low-frequency fatigue was measured 35 min after testing at 90 degrees ankle position by using the ratio of isometric force produced by 20- and 100-Hz stimulation frequencies.

RESULTS

Eccentric training increased maximal isometric force per muscle weight by 22% whereas muscle weights were unchanged. In control muscles (C), isometric force immediately preceding each concentric muscle action decreased more at long lengths than at short lengths during the fatigue protocol; this length-dependent difference disappeared after 30 min of recovery. At short lengths, isometric force decreased less in trained muscles (T) (C: 78.4 +/- 3.6%; T: 59.6 +/- 4.4%) and recovered more during the following 30-min period (C: 84.7 +/- 2.5%; T: 95.4 +/- 2.8% of initial values). Changes in F20/F100 were smaller for trained muscles (C: 35.4 +/- 2.0%; T: 22.0 +/- 1.4%).

CONCLUSIONS

High-speed eccentric training (5 d x wk(-1) for 6 wk) reduced fatigability and enhanced recovery mainly at long muscle lengths. It also reduced low-frequency fatigue, which may be attributed to alterations in intracellular calcium handling.

摘要

目的

确定大鼠跖屈肌高速离心训练对以下方面的影响:1)踝关节90度位置时的最大(120赫兹)力量;2)在短或长肌肉长度下测试的疲劳(40次向心肌肉动作,活动范围50度)和恢复(6次向心肌肉动作);3)低频疲劳。

方法

训练包括从140度至40度的踝关节位置进行离心肌肉动作(速度约为400度×秒⁻¹),随后进行无阻力向心肌肉动作(5×10次重复,每周5天,共6周)。通过向心肌肉动作诱导疲劳,肌肉动作之间休息12.5秒,恢复包括每5分钟进行等效的向心肌肉动作,持续30分钟。在踝关节90度位置测试后35分钟,通过使用20赫兹和100赫兹刺激频率产生的等长力量之比来测量低频疲劳。

结果

离心训练使每肌肉重量的最大等长力量增加了22%,而肌肉重量未改变。在对照肌肉(C)中,在疲劳方案期间,每次向心肌肉动作之前的等长力量在长肌肉长度时比在短肌肉长度时下降更多;这种长度依赖性差异在恢复30分钟后消失。在短肌肉长度时,训练肌肉(T)中的等长力量下降较少(C:78.4±3.6%;T:59.6±4.4%),并且在随后的30分钟内恢复得更多(C:84.7±2.5%;T:95.4±2.8%的初始值)。训练肌肉的F20/F100变化较小(C:35.4±2.0%;T:22.0±1.4%)。

结论

高速离心训练(每周5天,共6周)主要在长肌肉长度时降低了疲劳性并增强了恢复能力。它还减少了低频疲劳,这可能归因于细胞内钙处理的改变。

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