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Muscle-driven forward dynamic simulations for the study of normal and pathological gait

机译:肌肉驱动的前向动态模拟用于研究正常和病理步态

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摘要

There has been much recent interest in the use of muscle-actuated forward dynamic simulations to describe human locomotion. These models simulate movement through the integration of dynamic equations of motion and usually are driven by excitation inputs to muscles. Because motion is effected by individual muscle actuators, these simulations offer potential insights into the roles played by muscles in producing walking motions. Better knowledge of the actions of muscles should lead to clarification of the etiology of movement disorders and more effective treatments. This article reviews the use of such simulations to characterize musculoskeletal function and describe the actions of muscles during normal and pathological locomotion. The review concludes by identifying ways in which models must be improved if their potential for clinical utility is to be realized.
机译:最近人们对使用肌肉驱动的前向动态模拟来描述人类运动产生了极大的兴趣。这些模型通过集成动态运动方程来模拟运动,通常由激励输入驱动。由于运动是由各个肌肉执行器影响的,因此这些模拟提供了潜在的见解,以了解肌肉在产生步行运动中所起的作用。更好地了解肌肉的活动应有助于阐明运动障碍的病因和更有效的治疗方法。本文介绍了使用此类模拟来表征肌肉骨骼功能并描述正常和病理运动过程中肌肉的作用。审查通过确定如果要实现其潜在的临床实用性必须改进模型的方式来结束。

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