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在比目鱼肌和外侧腓肠肌中,随着自愿活动水平的降低,最佳束长向右移位。

Rightward shift of optimal fascicle length with decreasing voluntary activity level in the soleus and lateral gastrocnemius muscles.

机构信息

Ruhr University Bochum, Faculty of Sport Science, Human Movement Science, 44801 Bochum, Germany

Institute for Physiology II, University of Muenster, 48149 Muenster, Germany.

出版信息

J Exp Biol. 2021 Jan 12;224(Pt 1):jeb235614. doi: 10.1242/jeb.235614.

Abstract

Much of our understanding of skeletal muscle properties is based on studies performed under maximal activation, which is problematic because muscles are rarely activated maximally during movements such as walking. Currently, force-length properties of the human triceps surae at submaximal voluntary muscle activity levels are not characterized. We therefore evaluated plantar flexor torque- and force-ankle angle, and torque- and force-fascicle length properties of the soleus and lateral gastrocnemius muscles during voluntary contractions at three activity levels: 100, 30 and 22% of maximal voluntary contraction. Soleus activity levels were controlled by participants via real-time electromyography feedback and contractions were performed at ankle angles ranging from 10 deg plantar flexion to 35 deg dorsiflexion. Using dynamometry and ultrasound imaging, torque-fascicle length curves of the soleus and lateral gastrocnemius muscles were constructed. The results indicate that small muscle activity reductions shift the torque- and force-angle, and torque- and force-fascicle length curves of these muscles to more dorsiflexed ankle angles and longer fascicle lengths (from 3 to 20% optimal fascicle length, depending on ankle angle). The shift in the torque- and force-fascicle length curves during submaximal voluntary contraction have potential implications for human locomotion (e.g. walking) as the operating range of fascicles shifts to the ascending limb, where muscle force capacity is reduced by at least 15%. These data demonstrate the need to match activity levels during construction of the torque- and force-fascicle length curves to activity levels achieved during movement to better characterize the lengths that muscles operate at relative to their optimum during a specific task.

摘要

我们对骨骼肌特性的理解在很大程度上基于在最大激活状态下进行的研究,但这存在问题,因为在行走等运动中,肌肉很少处于最大激活状态。目前,人类比目鱼肌和外侧腓肠肌在亚最大自主肌肉活动水平下的力-长度特性尚未得到描述。因此,我们评估了在三个活动水平(100%、30%和 22%最大自主收缩)下,主动收缩时比目鱼肌和外侧腓肠肌的跖屈力矩和力-踝关节角度,以及力矩和力-肌小节长度特性。通过实时肌电图反馈,参与者控制比目鱼肌的活动水平,收缩范围从 10°跖屈到 35°背屈。使用测力和超声成像,构建了比目鱼肌和外侧腓肠肌的力矩-肌小节长度曲线。结果表明,肌肉活动的小幅度减少会使这些肌肉的力矩-和力-角度以及力矩-和力-肌小节长度曲线向更背屈的踝关节角度和更长的肌小节长度(从 3%到 20%最佳肌小节长度,取决于踝关节角度)移动。在亚最大自主收缩期间,力矩-和力-肌小节长度曲线的移动可能对人类运动(例如行走)有影响,因为肌小节的工作范围移至上升支,而肌肉力量能力至少降低 15%。这些数据表明,在构建力矩-和力-肌小节长度曲线时,需要将活动水平与运动中达到的活动水平相匹配,以更好地描述在特定任务中肌肉相对于最佳长度的工作长度。

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