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首页> 外文期刊>Journal of mechanics in medicine and biology >THE DEVELOPMENT OF AN EMG CONTROLLER-BASED ROBOTIC GAIT TRAINING SYSTEM AND ITS CLINICAL FEASIBILITY FOR SUBACUTE STROKE PATIENTS IN IMPROVING LOCOMOTIVE FUNCTION
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THE DEVELOPMENT OF AN EMG CONTROLLER-BASED ROBOTIC GAIT TRAINING SYSTEM AND ITS CLINICAL FEASIBILITY FOR SUBACUTE STROKE PATIENTS IN IMPROVING LOCOMOTIVE FUNCTION

机译:基于EMG控制器的机器人步态训练系统的发展及其在改善机车功能方面的亚急性中风患者的临床可行性

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摘要

One-third of stroke survivors fail to regain independent ambulation and strokes have been identified as a significant source of long-term disability and a tremendous health burden. Robot-assisted gait rehabilitation is gaining traction and advocators for its inclusion as part of the routine post-stroke rehabilitation program are on the increase. However, despite the recent technological advances in the development and design of better robotics, the research evidence on the best model of robotic training remains sparse and unclear. It is therefore the aim of the current study to comparatively investigate the clinical feasibility and efficacy of a recently developed HIWIN Robotic Gait Training System (MRG-P100) combined with the use of a lab-developed MBS-E100 EMG system as a controller on facilitating the development of an appropriate gait pattern for motor impaired subacute stroke patients. The results indicated that due to the heterogeneity of stroke-induced changes in muscle characteristics, an “auto-fit” algorithm was required to allow constant monitoring and updating of the appropriate threshold based on EMG signals captured during previous gait cycle in order to determine the desired muscle activation threshold for the current gait cycle. Eighteen participants were tested using the new auto-fit algorithm and results demonstrated a significantly more fluent and physiologically appropriate gait pattern.
机译:三分之一的中风幸存者未能恢复自主救护车,并且已经被确定为长期残疾的重要来源和巨大的健康负担。机器人辅助步态康复正在获得牵引和倡导者,因为其纳入中卒中后康复计划的一部分正在增加。然而,尽管最近的技术进步的开发和设计了更好的机器人学,但是关于机器人训练最佳模型的研究证据仍然稀疏和不清楚。因此,目前研究目前的研究旨在相对调查最近开发的HIWIN机器人步态训练系统(MRG-P100)的临床可行性和功效,所述临床可行性和功效联合使用实验室开发的MBS-E100 EMG系统作为促进的控制器电动机受损亚急性中风患者的适当步态模式的开发。结果表明,由于行程引起的肌肉特性的变化的异质性,需要基于先前步态周期捕获的EMG信号来允许持续监测和更新适当的阈值,以便确定所需的肌肉激活阈值对于当前的步态周期。使用新的自动拟合算法测试了十八名参与者,结果表明了更流畅和生理上适当的步态模式。

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