Integrated Design of Functional Electrical Stimulator and Transcutaneous Electrical Nerve Stimulator on a Single Prototype

A. Khan, Ke Li, Na Wei
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Abstract

This study proposed a novel system with an integrated design of functional electrical stimulator (FES) and transcutaneous electrical nerve stimulator (TENS) on a single prototype. The novel component of the device involves two modes of operation – the FES and TENS, with controllable frequency, pulse-width, stimulation intensity, and multi-shape pulses on a single device. A boost converter controls the stimulation intensity; an Arduino Uno microcontroller controls the frequency and pulse width; an H-bridge produces square pulses, a toggle switch monitors the mode of operation, and RC filters generate multiple shape pulses. The FES and TENS modes of the device were analyzed with variable parameters and multiple shape pulses. This new design realized a low cost (less than 50 $), low inputs (9 V), and multi-shape stimulation pulses for the FES and TENS, with variable frequency control, controllable pulse-width, and smaller size of the device on a single prototype. This design makes the FES and TENS more practically switched and safer with lower voltage outputs (less than 35 V) than the single-mode stimulators.
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功能性电刺激器和经皮神经电刺激器在单一原型上的集成设计
本研究提出了一种将功能性电刺激器(FES)和经皮神经电刺激器(TENS)集成在一个原型上的新系统。该设备的新组件包括两种工作模式- FES和TENS,在单个设备上具有可控的频率,脉冲宽度,刺激强度和多形状脉冲。升压变换器控制刺激强度;Arduino Uno微控制器控制频率和脉宽;h桥产生方形脉冲,拨动开关监视操作模式,RC滤波器产生多个形状脉冲。在变参数和多形状脉冲条件下,对器件的FES和TENS模式进行了分析。这种新设计实现了FES和TENS的低成本(不到50美元)、低输入(9 V)和多形状刺激脉冲,具有变频控制、脉冲宽度可控和单个原型上更小的设备尺寸。与单模刺激器相比,该设计使FES和TENS具有更低的电压输出(小于35 V),更实用和更安全。
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