首页> 外文会议>2012 IEEE EMBS Conference on Biomedical Engineering and Sciences. >Development of wireless-based low-cost current controlled stimulator for patients with spinal cord injuries
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Development of wireless-based low-cost current controlled stimulator for patients with spinal cord injuries

机译:用于脊髓损伤患者的基于无线的低成本电流控制刺激器的开发

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A spinal cord injury (SCI) has a severe impact on human life in general as well as on the physical status and condition. The use of electrical signals to restore the function of paralyzed muscles is called functional electrical stimulation (FES). FES is a promising way to restore mobility to SCI by applying low-level electrical current to the paralyzed muscles so as to enhance that person's ability to function and live independently. However, due to the limited number of commercially available FES assisted exerciser systems and their rather high cost, the conventional devices are unaffordable for most peoples. It also inconvenient because of wired based system that creates a limitation in performing exercise. Thus, this project is concerned with the development of low-cost current controlled stimulator mainly for the paraplegic subjects. The developed device should be based on a microcontroller, wireless based system using Zigbee module, voltage-to-current converter circuit and should produce proper monophasic and biphasic current pulses, pulse trains, arbitrary current waveforms, and a trigger output for FES applications. The performances of the device will be assessed through simulation study and validated through experimental work. This device will be developed as in the new technique of the stimulator development with low cost and one of the contributing factors in Rehabilitation Engineering for patients with SCI.
机译:脊髓损伤(SCI)会对人类的整体生活以及身体状况产生严重影响。使用电信号恢复瘫痪肌肉的功能称为功能性电刺激(FES)。 FES是通过向瘫痪的肌肉施加小电流来恢复SCI的活动性的一种有前途的方法,从而增强该人的功能和独立生活的能力。然而,由于市售的FES辅助锻炼器系统数量有限以及其相当高的成本,传统设备对大多数人来说买不起。由于基于有线的系统在进行锻炼方面造成限制,因此也不方便。因此,该项目涉及主要针对截瘫患者的低成本电流控制刺激器的开发。开发的设备应基于微控制器,使用Zigbee模块的无线系统,电压至电流转换器电路,并应产生适当的单相和双相电流脉冲,脉冲序列,任意电流波形以及用于FES应用的触发输出。该设备的性能将通过仿真研究进行评估,并通过实验工作进行验证。该设备将以刺激器开发的新技术开发,价格低廉,是SCI患者康复工程中的重要因素之一。

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