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臀大肌和比目鱼肌在模拟股四头肌萎缩和行走时激活失败时起到代偿作用。

Gluteus maximus and soleus compensate for simulated quadriceps atrophy and activation failure during walking.

机构信息

Department of Mechanical and Aerospace Engineering, The Ohio State University, Columbus, OH 43210-1142, USA.

出版信息

J Biomech. 2013 Sep 3;46(13):2165-72. doi: 10.1016/j.jbiomech.2013.06.033. Epub 2013 Jul 31.

Abstract

Important activities of daily living, like walking and stair climbing, may be impaired by muscle weakness. In particular, quadriceps weakness is common in populations such as those with knee osteoarthritis (OA) and following ACL injury and may be a result of muscle atrophy or reduced voluntary muscle activation. While weak quadriceps have been strongly correlated with functional limitations in these populations, the important cause-effect relationships between abnormal lower extremity muscle function and patient function remain unknown. As a first step towards determining those relationships, the purpose of this study was to estimate changes in muscle forces and contributions to support and progression to maintain normal gait in response to two sources of quadriceps weakness: atrophy and activation failure. We used muscle-driven simulations to track normal gait kinematics in healthy subjects and applied simulated quadriceps weakness as atrophy and activation failure to evaluate compensation patterns associated with the individual sources of weakness. We found that the gluteus maximus and soleus muscles display the greatest ability to compensate for simulated quadriceps weakness. Also, by simulating two different causes of muscle weakness, this model suggested different compensation strategies by the lower extremity musculature in response to atrophy and activation deficits. Estimating the compensation strategies that are necessary to maintain normal gait will enable investigations of the role of muscle weakness in abnormal gait and inform potential rehabilitation strategies to improve such conditions.

摘要

重要的日常生活活动,如行走和爬楼梯,可能会因肌肉无力而受到影响。特别是股四头肌无力在膝骨关节炎(OA)人群和 ACL 损伤后很常见,可能是由于肌肉萎缩或自愿肌肉激活减少所致。虽然在这些人群中,虚弱的股四头肌与功能受限密切相关,但下肢肌肉功能异常与患者功能之间的重要因果关系仍不清楚。作为确定这些关系的第一步,本研究的目的是估计在两种股四头肌无力源(萎缩和激活失败)的情况下,肌肉力量的变化及其对支持和进展以维持正常步态的贡献。我们使用肌肉驱动模拟来跟踪健康受试者的正常步态运动学,并应用模拟股四头肌无力作为萎缩和激活失败来评估与个体无力源相关的补偿模式。我们发现,臀大肌和比目鱼肌具有最大的补偿模拟股四头肌无力的能力。此外,通过模拟两种不同的肌肉无力原因,该模型表明,下肢肌肉对萎缩和激活不足的反应存在不同的补偿策略。估计维持正常步态所需的补偿策略将能够研究肌肉无力在异常步态中的作用,并为改善这种情况提供潜在的康复策略。

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