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倾斜传感器在功能性电刺激中的应用。

Application of tilt sensors in functional electrical stimulation.

作者信息

Dai R, Stein R B, Andrews B J, James K B, Wieler M

机构信息

Division of Neuroscience, University of Alberta, Edmonton, Canada.

出版信息

IEEE Trans Rehabil Eng. 1996 Jun;4(2):63-72. doi: 10.1109/86.506403.

Abstract

Tilt sensors, or inclinometers have been investigated for the control of Functional Electrical Stimulation (FES) to improve the gait of persons who had a stroke or incomplete spinal cord injury (SCI). Different types of tilt sensors were studied for their characteristics and their performance in measuring the angular displacement of leg segments during gait. Signal patterns of the lower leg with inertial tilt sensors were identified with control subjects and subjects with footdrop who are being stimulated during level walking. To minimize acceleration responses when the foot swings or hits the ground, we use low-pass filtering (1.5-2 Hz). A finite state approach allows the sensor fixed on the shank to effectively detect the step intention in a population of stroke and incomplete SCI subjects and to control the FES. When the lower leg tilts backward, the common peroneal nerve is stimulated to bring the foot up and forward. We have designed a miniature footdrop stimulator with a magnetoresistive tilt sensor built in, so no external sensor cables are required. The thresholds to turn the stimulator on and off can be adjusted, as well as the maximum period of stimulation and the minimum interval between periods of stimulation. This device features several important advantages over traditional AFO's or stimulators controlled by foot switches. Initial trials with stroke and SCI subjects have demonstrated substantial gait improvement for some subjects, while most liked the good cosmesis and ease of using the device with a tilt sensor.

摘要

倾斜传感器,即倾角仪,已被用于研究功能性电刺激(FES)的控制,以改善中风或不完全脊髓损伤(SCI)患者的步态。研究了不同类型倾斜传感器在测量步态期间腿部节段角位移时的特性和性能。利用惯性倾斜传感器确定了在平地上行走时接受刺激的对照组受试者和足下垂受试者小腿的信号模式。为了在足部摆动或着地时最小化加速度响应,我们使用低通滤波(1.5 - 2赫兹)。一种有限状态方法使固定在小腿上的传感器能够有效地检测中风和不完全SCI受试者群体中的步行动机,并控制FES。当小腿向后倾斜时,刺激腓总神经以使足部抬起并向前移动。我们设计了一种内置磁阻倾斜传感器的微型足下垂刺激器,因此无需外部传感器电缆。可以调节刺激器开启和关闭的阈值,以及最大刺激时长和刺激周期之间的最小间隔。与传统的踝足矫形器(AFO)或由脚踏开关控制的刺激器相比,该设备具有几个重要优点。对中风和SCI受试者的初步试验表明,一些受试者的步态有显著改善,而大多数人喜欢该带有倾斜传感器的设备的良好外观和易用性。

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