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使用模糊逻辑控制和线性模型进行足下垂矫正的强度和持续时间自适应功能性电刺激

Intensity- and Duration-Adaptive Functional Electrical Stimulation Using Fuzzy Logic Control and a Linear Model for Dropfoot Correction.

作者信息

Chen Guangtao, Shen Zhihang, Zhuang Yu, Wang Xiaoyun, Song Rong

机构信息

Key Laboratory of Sensing Technology and Biomedical Instrument of Guangdong Province, School of Engineering, Sun Yat-Sen University, Guangzhou, China.

The Guangdong Work Injury Rehabilitation Center, Guangzhou, China.

出版信息

Front Neurol. 2018 Mar 19;9:165. doi: 10.3389/fneur.2018.00165. eCollection 2018.

Abstract

Functional electrical stimulation (FES) is important in gait rehabilitation for patients with dropfoot. Since there are time-varying velocities during FES-assisted walking, it is difficult to achieve a good movement performance during walking. To account for the time-varying walking velocities, seven poststroke subjects were recruited and fuzzy logic control and a linear model were applied in FES-assisted walking to enable intensity- and duration-adaptive stimulation (IDAS) for poststroke subjects with dropfoot. In this study, the performance of IDAS was evaluated using kinematic data, and was compared with the performance under no stimulation (NS), FES-assisted walking triggered by heel-off stimulation (HOS), and speed-adaptive stimulation. A larger maximum ankle dorsiflexion angle in the IDAS condition than those in other conditions was observed. The ankle plantar flexion angle in the IDAS condition was similar to that of normal walking. Improvement in the maximum ankle dorsiflexion and plantar flexion angles in the IDAS condition could be attributed to having the appropriate stimulation intensity and duration. In summary, the intensity- and duration-adaptive controller can attain better movement performance and may have great potential in future clinical applications.

摘要

功能性电刺激(FES)在足下垂患者的步态康复中具有重要意义。由于在FES辅助行走过程中存在时变速度,因此在行走过程中难以实现良好的运动表现。为了考虑时变的行走速度,招募了7名中风后受试者,并将模糊逻辑控制和线性模型应用于FES辅助行走中,以实现对中风后足下垂受试者的强度和持续时间自适应刺激(IDAS)。在本研究中,使用运动学数据评估了IDAS的性能,并将其与无刺激(NS)、足跟离地刺激触发的FES辅助行走(HOS)以及速度自适应刺激下的性能进行了比较。观察到IDAS条件下的最大踝关节背屈角度大于其他条件下的最大踝关节背屈角度。IDAS条件下的踝关节跖屈角度与正常行走时的角度相似。IDAS条件下最大踝关节背屈和跖屈角度的改善可归因于具有适当的刺激强度和持续时间。总之,强度和持续时间自适应控制器可以获得更好的运动表现,并且在未来的临床应用中可能具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb2f/5868077/8d2163c0e11e/fneur-09-00165-g001.jpg

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