Huang Zonghao, Wang Zhigong, Lv Xiaoying, Zhou Yuxuan, Wang Haipeng, Zong Sihao
Institute of RF- & OE-ICs, Southeast University, Nanjing, Jiangsu Province, China.
Institute of RF- & OE-ICs, Southeast University, Nanjing, Jiangsu Province, China ; Co-innovation Center of Neuroregeneration, Nantong University, Nantong, Jiangsu Province, China.
Neural Regen Res. 2014 Dec 1;9(23):2102-10. doi: 10.4103/1673-5374.147938.
Hemiparesis is one of the most common consequences of stroke. Advanced rehabilitation techniques are essential for restoring motor function in hemiplegic patients. Functional electrical stimulation applied to the affected limb based on myoelectric signal from the unaffected limb is a promising therapy for hemiplegia. In this study, we developed a prototype system for evaluating this novel functional electrical stimulation-control strategy. Based on surface electromyography and a vector machine model, a self-administered, multi-movement, force-modulation functional electrical stimulation-prototype system for hemiplegia was implemented. This paper discusses the hardware design, the algorithm of the system, and key points of the self-oscillation-prone system. The experimental results demonstrate the feasibility of the prototype system for further clinical trials, which is being conducted to evaluate the efficacy of the proposed rehabilitation technique.
偏瘫是中风最常见的后果之一。先进的康复技术对于恢复偏瘫患者的运动功能至关重要。基于来自未受影响肢体的肌电信号对受影响肢体施加功能性电刺激是一种很有前景的偏瘫治疗方法。在本研究中,我们开发了一个用于评估这种新型功能性电刺激控制策略的原型系统。基于表面肌电图和向量机模型,实现了一种用于偏瘫的自我管理、多动作、力调制功能性电刺激原型系统。本文讨论了该系统的硬件设计、算法以及易发生自振荡系统的关键点。实验结果证明了该原型系统用于进一步临床试验的可行性,目前正在进行临床试验以评估所提出的康复技术的疗效。