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Inverted Pendulum Standing Apparatus for Investigating Closed-Loop Control of Ankle Joint Muscle Contractions during Functional Electrical Stimulation

机译:倒立式站立仪器用于研究功能性电刺激过程中踝关节肌肉收缩的闭环控制

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摘要

The restoration of arm-free standing in individuals with paraplegia can be facilitated via functional electrical stimulation (FES). In developing adequate control strategies for FES systems, it remains challenging to test the performance of a particular control scheme on human subjects. In this study, we propose a testing platform for developing effective control strategies for a closed-loop FES system for standing. The Inverted Pendulum Standing Apparatus (IPSA) is a mechanical inverted pendulum, whose angular position is determined by the subject's ankle joint angle as controlled by the FES system while having the subject's body fixed in a standing frame. This approach provides a setup that is safe, prevents falling, and enables a research and design team to rigorously test various closed-loop controlled FES systems applied to the ankle joints. To demonstrate the feasibility of using the IPSA, we conducted a case series that employed the device for studying FES closed-loop controllers for regulating ankle joint kinematics during standing. The utilized FES system stimulated, in able-bodied volunteers, the plantarflexors as they prevent toppling during standing. Four different conditions were compared, and we were able to show unique performance of each condition using the IPSA. We concluded that the IPSA is a useful tool for developing and testing closed-loop controlled FES systems for regulating ankle joint position during standing.
机译:通过功能性电刺激(FES)可以促进截瘫患者的无臂站立状态的恢复。在为FES系统开发适当的控制策略时,测试特定控制方案对人类对象的性能仍然具有挑战性。在这项研究中,我们提出了一个测试平台,用于开发用于站立的闭环FES系统的有效控制策略。倒立摆装置(IPSA)是一种机械倒立摆,其角度位置由受检者的脚踝关节角度确定,受FES系统控制,同时将受检者的身体固定在站立框架中。这种方法提供了一种安全的设置,可防止跌倒,并使研究和设计团队能够严格测试应用于踝关节的各种闭环控制FES系统。为了证明使用IPSA的可行性,我们进行了一个案例系列,该案例采用了该设备来研究FES闭环控制器,以调节站立过程中的踝关节运动学。充分利用的FES系统在身体健全的志愿者中刺激了ors屈肌,因为它们可以防止站立时倒下。比较了四种不同的条件,使用IPSA,我们能够显示每种条件的独特性能。我们得出的结论是,IPSA是开发和测试闭环控制FES系统的有用工具,该系统可在站立时调节踝关节的位置。

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