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首页> 外文期刊>Biomedical signal processing and control >A distributed three-channel wireless Functional Electrical Stimulation system for automated triggering of stimulation to enable coordinated task execution by patients with neurological disease
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A distributed three-channel wireless Functional Electrical Stimulation system for automated triggering of stimulation to enable coordinated task execution by patients with neurological disease

机译:分布式三通道无线功能性电刺激系统,用于自动触发刺激,以使神经病患者能够协调地执行任务

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摘要

Functional Electrical Stimulation (FES) is a technique used to improve mobility and function for patients suffering some neurological related diseases such us Multiple Sclerosis (MS) and stroke. Some patients might require FES applied in more than one location depending on the extent of the neurological condition. Currently, this can be achieved using multi-channel FES systems. However, these systems can be bulky and impractical in daily usage. This research investigates using a wireless distributed FES system to overcome some of the limitations of the current multi-channel systems. A prototype of a three-channel FES system was built and tested. The prototype is used for drop foot stimulation and reciprocal arm swing stimulation while the user is walking, and for elbow extension and wrist/fingers opening stimulation if triggered while standing or sitting. A pilot study was designed to evaluate the reliability and repeatability of the system with 11 healthy volunteers without applying stimulation. This was followed by a case study with a hemiplegic person. The results indicate that the system can successfully detect and generate output responses appropriate to the input signals from the body sensors.
机译:功能性电刺激(FES)是一种用于改善患有某些神经系统相关疾病(例如多发性硬化症(MS)和中风)的患者的活动能力和功能的技术。根据神经系统疾病的程度,某些患者可能需要在多个位置使用FES。当前,这可以使用多通道FES系统来实现。但是,这些系统在日常使用中可能体积庞大且不切实际。这项研究调查了使用无线分布式FES系统来克服当前多通道系统的某些局限性。建立并测试了三通道FES系统的原型。该原型用于在用户行走时进行落脚刺激和往复手臂摆动刺激,并在站立或坐姿触发时用于肘部伸展和腕部/手指打开刺激。设计了一项初步研究,以评估11名健康志愿者在不施加刺激的情况下系统的可靠性和可重复性。随后是一个偏瘫患者的案例研究。结果表明,该系统可以成功检测并生成适合于来自人体传感器的输入信号的输出响应。

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