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行走过程中,腿部肌肉功能根据身体支撑和向前推进需求的变化进行调节。

Modulation of leg muscle function in response to altered demand for body support and forward propulsion during walking.

作者信息

McGowan C P, Kram R, Neptune R R

机构信息

Department of Mechanical Engineering, University of Texas at Austin, Austin, TX 78712-0292, USA.

出版信息

J Biomech. 2009 May 11;42(7):850-6. doi: 10.1016/j.jbiomech.2009.01.025. Epub 2009 Feb 27.

Abstract

A number of studies have examined the functional roles of individual muscles during normal walking, but few studies have examined which are the primary muscles that respond to changes in external mechanical demand. Here we use a novel combination of experimental perturbations and forward dynamics simulations to determine how muscle mechanical output and contributions to body support and forward propulsion are modulated in response to independent manipulations of body weight and body mass during walking. Experimentally altered weight and/or mass were produced by combinations of added trunk loads and body weight support. Simulations of the same experimental conditions were used to determine muscle contributions to the vertical ground reaction force impulse (body support) and positive horizontal trunk work (forward propulsion). Contributions to the vertical impulse by the soleus, vastii and gluteus maximus increased (decreased) in response to increases (decreases) in body weight; whereas only the soleus increased horizontal work output in response to increased body mass. In addition, soleus had the greatest absolute contribution to both vertical impulse and horizontal trunk work, indicating that it not only provides the largest contribution to both body support and forward propulsion, but the soleus is also the primary mechanism to modulate the mechanical output of the leg in response to increased (decreased) need for body support and forward propulsion. The data also showed that a muscle's contribution to a specific task is likely not independent of its contribution to other tasks (e.g., body support vs. forward propulsion).

摘要

许多研究已经考察了正常行走过程中单个肌肉的功能作用,但很少有研究考察哪些是对外部机械需求变化做出反应的主要肌肉。在此,我们使用实验性扰动和正向动力学模拟的新组合,来确定在行走过程中,肌肉的机械输出以及对身体支撑和向前推进的贡献是如何响应体重和身体质量的独立变化而被调节的。通过增加躯干负荷和身体重量支撑的组合来产生实验性改变的体重和/或质量。使用相同实验条件的模拟来确定肌肉对垂直地面反作用力冲量(身体支撑)和正向水平躯干功(向前推进)的贡献。比目鱼肌、股四头肌和臀大肌对垂直冲量的贡献随着体重增加(减少)而增加(减少);而只有比目鱼肌在身体质量增加时增加了水平功输出。此外,比目鱼肌对垂直冲量和水平躯干功的绝对贡献最大,这表明它不仅对身体支撑和向前推进都提供了最大贡献,而且比目鱼肌也是响应身体支撑和向前推进需求增加(减少)而调节腿部机械输出的主要机制。数据还表明,一块肌肉对特定任务的贡献可能并非独立于其对其他任务的贡献(例如,身体支撑与向前推进)。

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