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外骨骼辅助步态训练对脑卒中后下肢肌肉协调性的影响。

Effects of an exoskeleton-assisted gait training on post-stroke lower-limb muscle coordination.

机构信息

Department of Physical Medicine and Rehabilitation, The University of Texas Health Science Center at Houston, Houston, TX, United States of America.

Center for Wearable Exoskeletons, NeuroRecovery Research Center, TIRR Memorial Hermann, Houston, TX, United States of America.

出版信息

J Neural Eng. 2021 Jun 4;18(4). doi: 10.1088/1741-2552/abf0d5.

Abstract

Powered exoskeletons have been used to help persons with gait impairment regain some walking ability. However, little is known about its impact on neuromuscular coordination in persons with stroke. The objective of this study is to investigate how a powered exoskeleton could affect the neuromuscular coordination of persons with post-stroke hemiparesis.Eleven able-bodied subjects and ten stroke subjects participated in a single-visit treadmill walking assessment, in which their motion and lower-limb muscle activities were captured. By comparing spatiotemporal parameters, kinematics, and muscle synergy pattern between two groups, we characterized the normal gait pattern and the post-stroke motor deficits. Five eligible stroke subjects received exoskeleton-assisted gait trainings and walking assessments were conducted pre-intervention (Pre) and post-intervention (Post), without (WO) and with (WT) the exoskeleton. We compared their gait performance between (a) Pre and Post to investigate the effect of exoskeleton-assisted gait training and, (b) WO and WT the exoskeleton to investigate the effect of exoskeleton wearing on stroke subjects.While four distinct motor modules were needed to describe lower-extremity activities during stead-speed walking among able-bodied subjects, three modules were sufficient for the paretic leg from the stroke subjects. Muscle coordination complexity, module composition and activation timing were preserved after the training, indicating the intervention did not significantly change the neuromuscular coordination. In contrast, walking WT the exoskeleton altered the stroke subjects' synergy pattern, especially on the paretic side. The changes were dominated by the activation profile modulation towards the normal pattern observed from the able-bodied group.This study gave us some critical insight into how a powered exoskeleton affects the stroke subjects' neuromuscular coordination during gait and demonstrated the potential to use muscle synergy as a method to evaluate the effect of the exoskeleton training.This study was registered at ClinicalTrials.gov (identifier: NCT03057652).

摘要

助力外骨骼已被用于帮助步态障碍患者恢复部分行走能力。然而,对于其对脑卒中患者神经肌肉协调性的影响知之甚少。本研究旨在探究助力外骨骼如何影响脑卒中后偏瘫患者的神经肌肉协调性。11 名健康受试者和 10 名脑卒中受试者参与了单次跑步机步行评估,在此过程中记录了他们的运动和下肢肌肉活动。通过比较两组的时空参数、运动学和肌肉协同模式,我们描述了正常步态模式和脑卒中后的运动缺陷。5 名符合条件的脑卒中受试者接受了外骨骼辅助步态训练,在干预前(Pre)和干预后(Post)进行了步行评估,有无(WO)和有(WT)外骨骼。我们比较了他们在(a)Pre 和 Post 之间的步态表现,以研究外骨骼辅助步态训练的效果,以及(b)WO 和 WT 外骨骼之间的步态表现,以研究外骨骼佩戴对脑卒中受试者的影响。虽然在稳定速度行走中,健康受试者需要四个不同的运动模块来描述下肢活动,但脑卒中受试者的患侧只需要三个模块。训练后肌肉协调复杂性、模块组成和激活时间保持不变,表明干预并未显著改变神经肌肉协调性。相比之下,WT 外骨骼会改变脑卒中受试者的协同模式,尤其是患侧。这些变化主要表现为朝着健康组观察到的正常模式的激活谱调制。本研究深入了解了助力外骨骼如何影响脑卒中患者的步态神经肌肉协调性,并展示了将肌肉协同作为评估外骨骼训练效果的方法的潜力。本研究在 ClinicalTrials.gov 注册(标识符:NCT03057652)。

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