Effects of robot-assisted hand function therapy on brain functional mechanisms: a synchronized study using fNIRS and sEMG.

IF 3.1 3区 医学 Q1 MEDICINE, GENERAL & INTERNAL
Frontiers in Medicine Pub Date : 2024-10-31 eCollection Date: 2024-01-01 DOI:10.3389/fmed.2024.1411616
Changfeng Cheng, Tiantian Liu, Beibei Zhang, Xubo Wu, Zhenwang Song, Zhongzhi Zhao, Xue Ren, Minjun Zhao, Yajuan Su, Jiening Wang
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引用次数: 0

Abstract

Background: Robot-assisted hand function therapy is pivotal in the rehabilitation of patients with stroke; however, its therapeutic mechanism remains elusive. Currently, research examining the impact of robot-assisted hand function therapy on brain function in patients with stroke is scarce, and there is a lack of studies investigating the correlation between muscle activity and alterations in brain function.

Objective: This study aimed to investigate the correlation between forearm muscle movement and brain functional activation by employing the synchronized use of functional near-infrared spectroscopy and surface electromyography methods. Moreover, it sought to compare neural activity patterns during different rehabilitation tasks and refine the mechanism of robot-assisted hand function therapy for post-stroke hand function impairments.

Methods: Stroke patients with hand dysfunction underwent three sessions of robot-assisted hand function therapy within 2 weeks to 3 months of onset. The fNIRS-sEMG synchronous technique was used to observe brain function and forearm muscle activation. Ten participants were randomly assigned to receive mirror, resistance, or passive rehabilitation training. During the intervention, cortical and muscle activation information was obtained using fNIRS and electromyographic signals. The primary outcomes included changes in oxyhemoglobin concentration and root mean square of surface electromyography.

Results: Compared to the resting state, the Oxy-Hb concentration in the brain regions involved in three rehabilitation tasks with robot-assisted hand function therapy significantly increased (p < 0.05). Mirror therapy significantly enhanced the prefrontal cortex and the superior frontal cortex activation levels. In contrast, resistance therapy significantly promoted the activation of the supplementary motor area and the premotor cortex. Passive rehabilitation tasks showed some activation in the target brain area premotor cortex region. Robot-assisted hand function therapy has shown that forearm muscle movement is closely related to oxygenated hemoglobin concentration activity in specific brain regions during different rehabilitation tasks.

Conclusion: The simultaneous sEMG-fNIRS study found a significant correlation between muscle movement and brain activity after stroke, which provides an important basis for understanding the treatment mechanism of hand function impairment.

机器人辅助手功能疗法对大脑功能机制的影响:使用 fNIRS 和 sEMG 进行的同步研究。
背景:机器人辅助手功能疗法在中风患者的康复治疗中举足轻重;然而,其治疗机制仍然难以捉摸。目前,有关机器人辅助手功能疗法对脑卒中患者脑功能影响的研究还很少,也缺乏对肌肉活动与脑功能改变之间相关性的研究:本研究旨在通过同步使用功能性近红外光谱和表面肌电图方法,研究前臂肌肉运动与大脑功能激活之间的相关性。此外,该研究还试图比较不同康复任务中的神经活动模式,完善机器人辅助手功能治疗脑卒中后手功能障碍的机制:方法:有手部功能障碍的脑卒中患者在发病后 2 周至 3 个月内接受了三次机器人辅助手部功能治疗。采用 fNIRS-sEMG 同步技术观察大脑功能和前臂肌肉激活情况。十名参与者被随机分配接受镜像、阻力或被动康复训练。在干预过程中,使用 fNIRS 和肌电信号获取大脑皮层和肌肉激活信息。主要结果包括氧合血红蛋白浓度和表面肌电图均方根的变化:结果:与静息状态相比,机器人辅助手功能疗法的三项康复任务所涉及的脑区的氧合血红蛋白浓度显著增加(p 结论:与静息状态相比,机器人辅助手功能疗法的三项康复任务所涉及的脑区的氧合血红蛋白浓度显著增加(p 结论):同时进行的 sEMG-fNIRS 研究发现,脑卒中后肌肉运动与大脑活动之间存在明显相关性,这为了解手功能障碍的治疗机制提供了重要依据。
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来源期刊
Frontiers in Medicine
Frontiers in Medicine Medicine-General Medicine
CiteScore
5.10
自引率
5.10%
发文量
3710
审稿时长
12 weeks
期刊介绍: Frontiers in Medicine publishes rigorously peer-reviewed research linking basic research to clinical practice and patient care, as well as translating scientific advances into new therapies and diagnostic tools. Led by an outstanding Editorial Board of international experts, this multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide. In addition to papers that provide a link between basic research and clinical practice, a particular emphasis is given to studies that are directly relevant to patient care. In this spirit, the journal publishes the latest research results and medical knowledge that facilitate the translation of scientific advances into new therapies or diagnostic tools. The full listing of the Specialty Sections represented by Frontiers in Medicine is as listed below. As well as the established medical disciplines, Frontiers in Medicine is launching new sections that together will facilitate - the use of patient-reported outcomes under real world conditions - the exploitation of big data and the use of novel information and communication tools in the assessment of new medicines - the scientific bases for guidelines and decisions from regulatory authorities - access to medicinal products and medical devices worldwide - addressing the grand health challenges around the world
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