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募集更快的运动单位与更大的肌束应变率以及运动过程中肌肉力量的快速变化有关。

Recruitment of faster motor units is associated with greater rates of fascicle strain and rapid changes in muscle force during locomotion.

机构信息

Department of Biomedical Physiology and Kinesiology, Simon Fraser University, Burnaby, BC, Canada, V5A1S6.

出版信息

J Exp Biol. 2013 Jan 15;216(Pt 2):198-207. doi: 10.1242/jeb.072637. Epub 2012 Sep 12.

Abstract

Animals modulate the power output needed for different locomotor tasks by changing muscle forces and fascicle strain rates. To generate the necessary forces, appropriate motor units must be recruited. Faster motor units have faster activation-deactivation rates than slower motor units, and they contract at higher strain rates; therefore, recruitment of faster motor units may be advantageous for tasks that involve rapid movements or high rates of work. This study identified motor unit recruitment patterns in the gastrocnemii muscles of goats and examined whether faster motor units are recruited when locomotor speed is increased. The study also examined whether locomotor tasks that elicit faster (or slower) motor units are associated with increased (or decreased) in vivo tendon forces, force rise and relaxation rates, fascicle strains and/or strain rates. Electromyography (EMG), sonomicrometry and muscle-tendon force data were collected from the lateral and medial gastrocnemius muscles of goats during level walking, trotting and galloping and during inclined walking and trotting. EMG signals were analyzed using wavelet and principal component analyses to quantify changes in the EMG frequency spectra across the different locomotor conditions. Fascicle strain and strain rate were calculated from the sonomicrometric data, and force rise and relaxation rates were determined from the tendon force data. The results of this study showed that faster motor units were recruited as goats increased their locomotor speeds from level walking to galloping. Slow inclined walking elicited EMG intensities similar to those of fast level galloping but different EMG frequency spectra, indicating that recruitment of the different motor unit types depended, in part, on characteristics of the task. For the locomotor tasks and muscles analyzed here, recruitment patterns were generally associated with in vivo fascicle strain rates, EMG intensity and tendon force. Together, these data provide new evidence that changes in motor unit recruitment have an underlying mechanical basis, at least for certain locomotor tasks.

摘要

动物通过改变肌肉力和肌束应变率来调节不同运动任务所需的功率输出。为了产生必要的力,必须适当招募运动单位。较快的运动单位比较慢的运动单位具有更快的激活-失活率,并且它们以更高的应变率收缩;因此,对于涉及快速运动或高工作速率的任务,招募较快的运动单位可能是有利的。本研究在山羊的腓肠肌中确定了运动单位募集模式,并检查了运动速度增加时是否募集更快的运动单位。该研究还检查了募集更快(或更慢)运动单位的运动任务是否与体内跟腱力、力上升和松弛率、肌束应变和/或应变率的增加(或减少)相关。在水平行走、小跑和疾驰以及倾斜行走和小跑期间,从山羊的外侧和内侧腓肠肌收集肌电图(EMG)、超声微测和肌肉-肌腱力数据。使用小波和主成分分析对 EMG 信号进行分析,以量化不同运动条件下 EMG 频谱的变化。从超声微测数据计算肌束应变和应变率,从肌腱力数据确定力上升和松弛率。本研究的结果表明,随着山羊从水平行走增加到疾驰,更快的运动单位被募集。缓慢倾斜行走产生的 EMG 强度与快速水平疾驰相似,但 EMG 频谱不同,表明不同运动单位类型的募集部分取决于任务的特征。对于这里分析的运动任务和肌肉,募集模式通常与体内肌束应变率、EMG 强度和肌腱力相关。这些数据共同提供了新的证据,表明运动单位募集的变化具有潜在的力学基础,至少对于某些运动任务是如此。

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