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使用二维肌电计算机接口调节和恢复脑卒中患者的肌肉间协调性:一项横断面和纵向研究。

Modulating and restoring inter-muscular coordination in stroke patients using two-dimensional myoelectric computer interface: a cross-sectional and longitudinal study.

机构信息

Key Laboratory of Sensing Technology and Biomedical Instrument of Guangdong Province, School of Biomedical Engineering, Sun Yat-sen University, Guangzhou 510275, People's Republic of China.

Sun Yat-sen Memorial Hospital, Sun Yat-sen University, Guangzhou 510120, People's Republic of China.

出版信息

J Neural Eng. 2021 Mar 8;18(3). doi: 10.1088/1741-2552/abc29a.

DOI:10.1088/1741-2552/abc29a
PMID:33075765
Abstract

Traditional training focuses on improving the motor function level of the limbs or joint levels, while inter-muscular coordination plays an important role in fine motor control and is often overlooked. The purpose of this study was to investigate the changes in inter-muscular coordination induced by the myoelectric-controlled interface (MCI) and the therapeutic effects of MCI-based inter-muscular coordination training on stroke patients.. Eleven stroke patients, twenty young subjects and thirteen age-matched subjects were recruited to determine the dimensionality effect of MCI on inter-muscular coordination in the evaluation test. In addition, a stroke patient participated in a 20-day training session to test the therapeutic effects as a case study analysis in the training test. In these two tests, all subjects performed tracking tasks by flexing/extending their elbows according to the biofeedback from one-dimensional and two-dimensional (2D) MCI. Meanwhile, the electromyography and functional near infrared spectroscopy signals were recorded simultaneously to reflect the muscle and cortical activations.. In all groups, as the MCI dimensionality increased, the antagonist activation decreased significantly, while the involvement in prefrontal cortex and primary motor cortex increased significantly. A significant reduction in muscle activation and an increase in cortical activation were found in the stroke patient, which might be due to a progressive normalization of patient after the training.. These findings suggested that 2D MCI could be an effective tool to directly modulate inter-muscular coordination for stroke patients. Inter-muscular coordination training may restore the ability to coordinate agonist-antagonist muscle of stroke patient and this improvement may be accompanied by cortical reorganization.

摘要

传统的训练侧重于提高四肢或关节水平的运动功能,而肌肉间协调在精细运动控制中起着重要作用,往往被忽视。本研究旨在探讨肌电控制界面(MCI)引起的肌肉间协调变化,以及基于 MCI 的肌肉间协调训练对中风患者的治疗效果。

招募了 11 名中风患者、20 名年轻受试者和 13 名年龄匹配的受试者,以确定 MCI 在评估测试中对肌肉间协调的维度效应。此外,一名中风患者参加了 20 天的训练课程,作为案例研究分析,在训练测试中测试治疗效果。在这两项测试中,所有受试者根据一维和二维(2D)MCI 的生物反馈,通过弯曲/伸展肘部来完成跟踪任务。同时,记录肌电图和功能近红外光谱信号,以反映肌肉和皮质激活情况。

在所有组中,随着 MCI 维度的增加,拮抗剂的激活显著降低,而前额叶皮层和初级运动皮层的参与显著增加。中风患者的肌肉激活显著降低,皮质激活增加,这可能是由于训练后患者逐渐正常化所致。

这些发现表明,2D MCI 可以成为一种有效的工具,直接调节中风患者的肌肉间协调。肌肉间协调训练可以恢复中风患者协调拮抗肌的能力,这种改善可能伴随着皮质重组。

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