预加载
等长运动
拉伸缩短周期
束
肌节
古怪的
肌肉收缩
解剖
医学
心脏病学
内科学
血流动力学
结构工程
生理学
跳跃的
心肌细胞
工程类
作者
Tobias Goecking,Denis Holzer,Daniel Hahn,Tobias Siebert,Wolfgang Seiberl
标识
DOI:10.1152/japplphysiol.00809.2023
摘要
Using a torque-matched preload protocol, we found that 2/3 of the performance enhancement in muscle-tendon unit stretch-shortening cycles (SSCs) is caused by the increased preload level. The remaining 1/3 is owed to the long-lasting history-dependent effects triggered during the stretch in SSCs. This increased performance output is attributed to passive elastic structures within the contractile element that do not require additional muscle activation, therefore contributing to the higher efficiency of the neuromuscular system in SSCs.
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