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腓肠肌内侧肌腱在力竭性单腿跳运动过程中的相互作用及结构变化。

Medial gastrocnemius muscle-tendon interaction and architecture change during exhaustive hopping exercise.

作者信息

Lidstone Daniel E, van Werkhoven Herman, Stewart Justin A, Gurchiek Reed, Burris Madison, Rice Paige, Feimster Garrett, McBride Jeffrey M

机构信息

Department of Health & Exercise Science, Appalachian State University, Holmes Convocation Center, 111 Rivers St, Boone, NC 28608, USA.

Department of Health & Exercise Science, Appalachian State University, Holmes Convocation Center, 111 Rivers St, Boone, NC 28608, USA.

出版信息

J Electromyogr Kinesiol. 2016 Oct;30:89-97. doi: 10.1016/j.jelekin.2016.06.006. Epub 2016 Jun 17.

Abstract

BACKGROUND

Previous literature has shown in vivo changes in muscle-tendon interaction during exhaustive stretch-shortening cycle (SSC) exercise. It is unclear whether these changes in muscle-tendon length during exhaustive SSC exercise are associated with changes in mechanical efficiency (ME). The purpose of the study was to investigate whether changes in platarflexor contractile component (CC) length, tendon length, and changes in plantarflexor muscle activity could explain reduction in ME during exhaustive SSC exercise.

METHODS

Eight males participated in an exhaustive hopping task to fatigue. Mechanical work and energy expenditure were calculated at different time-points during the hopping task. Furthermore, hopping kinetics and kinematics, medial gastrocnemius (MG) muscle activity, and in vivo ultrasound of the MG were also collected at different time-points throughout the hopping task.

RESULTS

ME did not change during the hopping protocol despite shorter tendon and longer CC lengths as subjects approached exhaustion. Percent decreases in pennation angle and muscle thickness were most strongly correlated to time to exhaustion (r=0.94, p⩽0.05; r=0.87, p⩽0.05; respectively). Percent changes in CC length change and pennation angle were strongly correlated to percent decrease in maximal voluntary isometric plantarflexion (MVIP) force (r=-0.71, p⩽0.04; r=0.70, p⩽0.05; respectively). Braking/push-off EMG ratio increased from initial pre-fatigue values to all other time points showing neuromuscular adaptations to altered muscle lengths.

CONCLUSION

Findings from the current study suggest that changes in CC and tendon lengths occur during repetitive hopping to exhaustion, with the amount change strongly related to time to exhaustion. ME of hopping remained unchanged in the presence of altered CC and tendon lengths.

摘要

背景

先前的文献表明,在力竭性的拉长-缩短周期(SSC)运动中,肌肉-肌腱相互作用存在体内变化。目前尚不清楚在力竭性SSC运动期间,这些肌肉-肌腱长度的变化是否与机械效率(ME)的变化相关。本研究的目的是探讨在力竭性SSC运动期间,跖屈收缩成分(CC)长度、肌腱长度的变化以及跖屈肌活动的变化是否能够解释ME的降低。

方法

八名男性参与了一项力竭性的单腿跳任务直至疲劳。在单腿跳任务的不同时间点计算机械功和能量消耗。此外,在整个单腿跳任务的不同时间点,还收集了单腿跳的动力学和运动学数据、腓肠肌内侧头(MG)肌肉活动以及MG的体内超声数据。

结果

尽管随着受试者接近疲劳,肌腱变短而CC长度变长,但在单腿跳过程中ME并未改变。羽状角和肌肉厚度的百分比下降与疲劳时间的相关性最强(分别为r = 0.94,p≤0.05;r = 0.87,p≤0.05)。CC长度变化和羽状角的百分比变化与最大自主等长跖屈(MVIP)力的百分比下降密切相关(分别为r = -0.71,p≤0.04;r = 0.70,p≤0.05)。制动/蹬离肌电图比值从最初的疲劳前值增加到所有其他时间点,表明神经肌肉对改变的肌肉长度产生了适应性变化。

结论

本研究结果表明,在重复性单腿跳直至疲劳的过程中,CC和肌腱长度会发生变化,变化量与疲劳时间密切相关。在CC和肌腱长度改变的情况下,单腿跳的ME保持不变。

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