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Modular Control of Human Walking: A Modeling and Simulation Study

机译:人体行走的模块化控制:建模与仿真研究

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Recent evidence suggests that performance of complex locomotor tasks such as walking may be accomplished using a simple underlying organization of co-active muscles, or "modules", which have been assumed to be structured to perform task-specific biomechanical functions (e.g., to provide body support and forward propulsion). Modular organization has been shown to explain muscle activity across a wide range of walking speeds, levels of body weight support and other combined movement tasks (e.g., [1]). However, no study has explicitly tested whether the modules would actually produce the biomechanical functions associated with them or even produce a well-coordinated movement. The purpose of this study was to generate muscle-actuated forward dynamics simulations of normal healthy walking using muscle activation modules identified using non-negative matrix factorization as the muscle control inputs to a) assess whether the modules are sufficient to produce well-coordinated walking, and b) identify the contributions of each module to the necessary biomechanical walking sub-tasks of body support, forward propulsion and leg swing. This analysis will critically assess the functional output of the previously identified modular organization of muscle activity in walking and investigate whether it provides a foundation for the neuromotor control of human locomotion.
机译:最近的证据表明,可以使用简单的潜在肌肉组织或“模块”来完成诸如步行的复杂运动任务的性能,或者已经假设被假定的结构化以执行特定的任务的生物力学功能(例如,提供身体支持和前进推进)。模块化组织已被证明可以解释跨各种步行速度的肌肉活动,体重支撑水平和其他组合运动任务(例如,[1])。然而,没有明确测试模块是否实际生产与它们相关的生物力学功能甚至产生协调的运动的生物力学功能。本研究的目的是使用使用非负矩阵分解的肌肉激活模块作为肌肉控制输入来产生正常健康行走的肌肉驱动正常动态模拟,因为肌肉控制输入)评估模块是否足以产生良好协调的行走, b)确定每个模块对身体支撑,前进推进和腿部挥杆的必要生物力学行走子任务的贡献。该分析将批判性地评估先前鉴定的肌肉活动组织的功能输出,并调查它是否为人类运动的神经电动机控制提供了基础。

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