首页> 外文会议>Engineering in Medicine and Biology, 2002. 24th Annual Conference and the Annual Fall Meeting of the Biomedical Engineering Society EMBS/BMES Conference, 2002. Proceedings of the Second Joint >Three dimensional modeling of the lower extremity for the study of static standing postures in Functional Electrical Stimulation (FES)
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Three dimensional modeling of the lower extremity for the study of static standing postures in Functional Electrical Stimulation (FES)

机译:下肢的三维模型,用于研究功能性电刺激(FES)中的静态站立姿势

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A highly desirable enhancement to Functional Electrical Stimulation (FES) aided standing would be the ability to stand without using the upper extremities for support or balance (hands free standing). To achieve this, a deeper insight into the stability of the system is required to design robust but simple controllers for maintaining the posture. We are examining this problem using simulations with a full three-dimensional modeling of the lower extremities and pelvis. This paper describes a major step in this effort: solving the inverse dynamics for the closed chain model of a typical stance. We have critically examined the main reasons why the closed chain model is problematic and have developed an equivalent approach that avoids using a closed chain model by accurately estimating the ground reaction forces. This approach has been applied to the inverse dynamics problem related to human static standing.
机译:功能性电刺激(FES)辅助站立的一种非常理想的增强功能是无需使用上肢进行支撑或保持平衡即可站立的能力(免手站立)。为实现此目的,需要对系统的稳定性有更深入的了解,以设计功能强大但简单的控制器来保持姿势。我们正在使用模拟下肢和骨盆的完整三维模型来研究此问题。本文描述了这项工作的主要步骤:解决典型姿势的闭链模型的逆动力学问题。我们已严格审查了闭链模型存在问题的主要原因,并已开发出一种等效方法,该方法可通过准确估算地面反作用力来避免使用闭链模型。此方法已应用于与人体静态站立有关的逆动力学问题。

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