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Preliminary Results of a Brain-Computer Interface System based on Functional Electrical Stimulation and Avatar Feedback for Lower Extremity Rehabilitation of Chronic Stroke Patients

机译:基于功能电刺激的脑电电脑界面系统的初步结果和慢性卒中患者下肢恢复的头像反馈

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Brain-Computer Interfaces (BCI) show important rehabilitation effects for patients after stroke. Previous studies have also shown improvements for patients that are in a chronic stage and/or have severe hemiparesis, and are particularly challenging for conventional rehabilitation techniques. For this pilot study three stroke patients in chronic phase with hemiparesis in the lower extremity were recruited. BCI system was based on the Motor Imagery (MI) with Functional Electrical Stimulation (FES) and Avatar feedback. The results show improvements in gait and balance measured with 10 Meter Walk Test (10MWT) and Timed Up and Go Test (TUG). Walking speed for 10MWT when walking speed was measured in fast velocity improved in average for 0.16 m/s. Improvements were also measured in ankle dorsiflexion movement ability measured with Range of Motion (ROM). The findings of the current study demonstrate this kind of rehabilitation approach could be effective. However further studies are needed including more patients.
机译:脑电脑界面(BCI)显示卒中后患者的重要康复效果。以前的研究还显示了慢性阶段和/或具有严重血清的患者的改善,并且对常规康复技术尤其具有挑战性。对于该试点研究,募集了三种中风患者慢性期慢性相血清中的血清中的血清发生。 BCI系统基于具有功能电刺激(FES)和化身反馈的电机图像(MI)。结果表明,使用10米的步伐(10MWT)测量的步态和平衡的改进,并定时和去测试(Tug)。在快速速度下测量步行速度时,10mWt的步行速度平均提高0.16米/秒。还通过运动范围(ROM)测量的脚踝背离运动能力来测量改进。目前研究的调查结果表明这种康复方法有效。然而,需要进一步的研究,包括更多患者。

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