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FES-Induced Cycling in Complete SCI: A Simpler Control Method Based on Inertial Sensors

机译:完整SCI中FES诱导的循环:一种基于惯性传感器的简单控制方法

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摘要

This article introduces a novel approach for a functional electrical stimulation (FES) controller intended for FES-induced cycling based on inertial measurement units (IMUs). This study aims at simplifying the design of electrical stimulation timing patterns while providing a method that can be adapted to different users and devices. In most of studies and commercial devices, the crank angle is used as an input to trigger stimulation onset. We propose instead to use thigh inclination as the reference information to build stimulation timing patterns. The tilting angles of both thighs are estimated from one inertial sensor located above each knee. An IF–THEN rule algorithm detects, online and automatically, the thigh peak angles in order to start and stop the stimulation of quadriceps muscles, depending on these events. One participant with complete paraplegia was included and was able to propel a recumbent trike using the proposed approach after a very short setting time. This new modality opens the way for a simpler and user-friendly method to automatically design FES-induced cycling stimulation patterns, adapted to clinical use, for multiple bike geometries and user morphologies.
机译:本文介绍了一种基于惯性测量单位(IMU)的功能性电刺激(FES)控制器的新方法,该控制器旨在用于FES诱导的循环。这项研究旨在简化电刺激时序模式的设计,同时提供一种可适用于不同用户和设备的方法。在大多数研究和商业设备中,曲柄角用作触发刺激发作的输入。我们建议改为使用大腿倾斜度作为参考信息来建立刺激时机模式。从位于每个膝盖上方的一个惯性传感器估算两个大腿的倾斜角度。 IF–THEN规则算法可根据这些事件在线自动检测大腿峰角,以开始和停止对股四头肌的刺激。包括一名完全性截瘫的参与者,他们能够在很短的设定时间后使用建议的方法推进卧式三轮车。这种新的方式为更简单和用户友好的方法开辟了道路,该方法可以自动设计FES诱导的自行车刺激模式,以适应临床使用,适用于多种自行车几何形状和用户形态。

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