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用于上肢运动康复的沉浸式运动想象脑机接口驱动虚拟现实系统的疗效及脑成像相关性:一项临床病例报告

Efficacy and Brain Imaging Correlates of an Immersive Motor Imagery BCI-Driven VR System for Upper Limb Motor Rehabilitation: A Clinical Case Report.

作者信息

Vourvopoulos Athanasios, Jorge Carolina, Abreu Rodolfo, Figueiredo Patrícia, Fernandes Jean-Claude, Bermúdez I Badia Sergi

机构信息

Neural Plasticity and Neurorehabilitation Laboratory, University of Southern California, Los Angeles, CA, United States.

Madeira Interactive Technologies Institute, Universidade da Madeira, Funchal, Portugal.

出版信息

Front Hum Neurosci. 2019 Jul 11;13:244. doi: 10.3389/fnhum.2019.00244. eCollection 2019.

Abstract

To maximize brain plasticity after stroke, a plethora of rehabilitation strategies have been explored. These include the use of intensive motor training, motor-imagery (MI), and action-observation (AO). Growing evidence of the positive impact of virtual reality (VR) techniques on recovery following stroke has been shown. However, most VR tools are designed to exploit active movement, and hence patients with low level of motor control cannot fully benefit from them. Consequently, the idea of directly training the central nervous system has been promoted by utilizing MI with electroencephalography (EEG)-based brain-computer interfaces (BCIs). To date, detailed information on which VR strategies lead to successful functional recovery is still largely missing and very little is known on how to optimally integrate EEG-based BCIs and VR paradigms for stroke rehabilitation. The purpose of this study was to examine the efficacy of an EEG-based BCI-VR system using a MI paradigm for post-stroke upper limb rehabilitation on functional assessments, and related changes in MI ability and brain imaging. To achieve this, a 60 years old male chronic stroke patient was recruited. The patient underwent a 3-week intervention in a clinical environment, resulting in 10 BCI-VR training sessions. The patient was assessed before and after intervention, as well as on a one-month follow-up, in terms of clinical scales and brain imaging using functional MRI (fMRI). Consistent with prior research, we found important improvements in upper extremity scores (Fugl-Meyer) and identified increases in brain activation measured by fMRI that suggest neuroplastic changes in brain motor networks. This study expands on the current body of evidence, as more data are needed on the effect of this type of interventions not only on functional improvement but also on the effect of the intervention on plasticity through brain imaging.

摘要

为了使中风后脑可塑性最大化,人们探索了大量的康复策略。这些策略包括强化运动训练、运动想象(MI)和动作观察(AO)。虚拟现实(VR)技术对中风后恢复的积极影响已有越来越多的证据。然而,大多数VR工具旨在利用主动运动,因此运动控制水平较低的患者无法充分从中受益。因此,利用基于脑电图(EEG)的脑机接口(BCI)进行运动想象,直接训练中枢神经系统的想法得到了推广。迄今为止,关于哪些VR策略能导致成功的功能恢复的详细信息仍然大量缺失,对于如何将基于EEG的BCI和VR范式最佳地整合用于中风康复也知之甚少。本研究的目的是使用运动想象范式,检验基于EEG的BCI-VR系统对中风后上肢康复进行功能评估的疗效,以及运动想象能力和脑成像的相关变化。为实现这一目的,招募了一名60岁的男性慢性中风患者。该患者在临床环境中接受了为期3周的干预,共进行了10次BCI-VR训练。在干预前后以及1个月的随访中,使用功能磁共振成像(fMRI)对患者进行了临床量表和脑成像评估。与先前的研究一致,我们发现上肢评分(Fugl-Meyer)有显著改善,并通过fMRI确定脑激活增加,这表明脑运动网络发生了神经可塑性变化。本研究扩展了当前的证据体系,因为不仅需要更多关于此类干预对功能改善的影响的数据,还需要更多关于干预通过脑成像对可塑性影响的数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdce/6637378/543d4e955077/fnhum-13-00244-g001.jpg

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