Suppr超能文献

在稳态健康步行过程中,各肌肉对下肢关节准刚度的贡献。

Individual muscle contributions to lower-limb joint quasi-stiffness during steady-state healthy walking.

作者信息

Molitor Stephanie L, Neptune Richard R

机构信息

Walker Department of Mechanical Engineering, The University of Texas at Austin, Austin, TX, USA.

Walker Department of Mechanical Engineering, The University of Texas at Austin, Austin, TX, USA.

出版信息

J Biomech. 2025 Sep;190:112851. doi: 10.1016/j.jbiomech.2025.112851. Epub 2025 Jul 7.

Abstract

Maintaining appropriate lower-limb joint stiffness is critical for walking performance, as it facilitates tasks such as absorbing impact loading, maintaining balance, and providing body support and propulsion. Quasi-stiffness, an indirect measure describing the joint moment-angle relationship, is often used to assess joint stiffness during walking as it accounts for passive soft tissue stiffness and active muscle force generation. Thus, identifying the primary muscle contributors to joint moments and angles can elucidate how muscles are coordinated to maintain quasi-stiffness. However, determining individual muscle contributions experimentally is challenging. Therefore, the objective of this study was to use musculoskeletal modeling and simulation to identify individual muscle contributions to sagittal-plane quasi-stiffness during walking. Simulations of 15 healthy young adults were developed and individual muscle contributions to joint moments and angles were determined within discrete phases of the gait cycle. As expected, contributors to ankle, knee and hip moments were the primary dorsiflexors/plantarflexors, knee flexors/extensors, and hip flexors/extensors, respectively, as these muscles cross the joint and directly contribute to their respective joint moments. However, major contributors to the joint angles also included distant and contralateral muscles. Specifically, the hip extensors and ankle dorsiflexors were found to contribute to the knee angle (8.4-19.7% and 9.0-17.1% of total muscle contributions, respectively), while contralateral hip extensors were found to contribute (16.6-27.2%) to the hip angle. These results highlight the role of distant muscles in maintaining quasi-stiffness, and provide a foundation for developing rehabilitation strategies and assistive devices to target stiffness impairments in clinical populations.

摘要

保持适当的下肢关节刚度对步行性能至关重要,因为它有助于完成诸如吸收冲击负荷、保持平衡以及提供身体支撑和推进等任务。准刚度是一种描述关节力矩-角度关系的间接测量方法,在步行过程中常用于评估关节刚度,因为它考虑了被动软组织刚度和主动肌肉力量的产生。因此,确定对关节力矩和角度起主要作用的肌肉可以阐明肌肉是如何协同工作以维持准刚度的。然而,通过实验确定单个肌肉的作用具有挑战性。因此,本研究的目的是使用肌肉骨骼建模和模拟来确定步行过程中单个肌肉对矢状面准刚度的贡献。对15名健康年轻成年人进行了模拟,并在步态周期的离散阶段确定了单个肌肉对关节力矩和角度的贡献。正如预期的那样,对踝关节、膝关节和髋关节力矩起主要作用的分别是主要的背屈肌/跖屈肌、膝关节屈肌/伸肌和髋关节屈肌/伸肌,因为这些肌肉跨越关节并直接对各自的关节力矩产生贡献。然而,对关节角度起主要作用的还包括远处和对侧的肌肉。具体而言,发现髋关节伸肌和踝关节背屈肌对膝关节角度有贡献(分别占总肌肉贡献的8.4-19.7%和9.0-17.1%),而对侧髋关节伸肌对髋关节角度有贡献(16.6-27.2%)。这些结果突出了远处肌肉在维持准刚度中的作用,并为制定康复策略和辅助设备以针对临床人群的刚度损伤提供了基础。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验