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具身虚拟镜像视觉反馈中的运动相关皮层电位

Movement-Related Cortical Potentials in Embodied Virtual Mirror Visual Feedback.

作者信息

Garipelli Gangadhar, Rossy Tamara, Perez-Marcos Daniel, Jöhr Jane, Diserens Karin

机构信息

MindMaze SA, Lausanne, Switzerland.

School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.

出版信息

Front Neurol. 2021 Jun 15;12:646886. doi: 10.3389/fneur.2021.646886. eCollection 2021.

Abstract

Mirror therapy is thought to drive interhemispheric communication, resulting in a balanced activation. We hypothesized that embodied virtual mirror visual feedback (VR-MVF) presented on a computer screen may produce a similar activation. In this proof-of-concept study, we investigated differences in movement-related cortical potentials (MRCPs) in the electroencephalogram (EEG) from different visual feedback of user movements in 1 stroke patient and 13 age-matched adults. A 60-year-old right-handed (Edinburgh score >95) male ischemic stroke [left paramedian pontine, National Institutes of Health Stroke Scale (NIHSS) = 6] patient and 13 age-matched right-handed (Edinburgh score >80) healthy adults (58 ± 9 years; six female) participated in the study. We recorded 16-electrode electroencephalogram (EEG), while participants performed planar center-out movements in two embodied visual feedback conditions: (i) direct (movements translated to the avatar's ipsilateral side) and (ii) mirror (movements translated to the avatar's contralateral side) with left (/) or right () arms. As hypothesized, we observed more balanced MRCP hemispheric negativity in the compared to the condition [statistically significant at the FC4 electrode; 99.9% CI, (0.81, 13)]. MRCPs in the stroke participant showed reduced lateralized negativity in the (non-paretic) situation compared to healthy participants. Interestingly, the potentials were stronger in the (non-paretic) compared to case, with significantly more bilateral negativity at FC3 [95% CI (0.758 13.2)] and C2 [95% CI (0.04 9.52)]. Embodied mirror visual feedback is likely to influence bilateral sensorimotor cortical subthreshold activity during movement preparation and execution observed in MRCPs in both healthy participants and a stroke patient.

摘要

镜像疗法被认为能促进半球间的交流,从而实现平衡激活。我们假设,在电脑屏幕上呈现的具身虚拟镜像视觉反馈(VR-MVF)可能会产生类似的激活效果。在这项概念验证研究中,我们调查了1名中风患者和13名年龄匹配的成年人在脑电图(EEG)中与运动相关的皮层电位(MRCPs)因用户运动的不同视觉反馈而产生的差异。一名60岁右利手(爱丁堡量表评分>95)的男性缺血性中风患者[左侧脑桥旁正中,美国国立卫生研究院卒中量表(NIHSS)=6]和13名年龄匹配的右利手(爱丁堡量表评分>80)健康成年人(58±9岁;6名女性)参与了该研究。我们记录了16电极脑电图(EEG),同时参与者在两种具身视觉反馈条件下进行平面中心向外运动:(i)直接反馈(运动转换到虚拟角色的同侧)和(ii)镜像反馈(运动转换到虚拟角色的对侧),分别使用左(/)或右()手臂。如我们所假设的,与直接反馈条件相比,我们观察到在镜像反馈条件下MRCP半球负性更为平衡[在FC4电极处具有统计学意义;99.9%置信区间,(0.81,13)]。与健康参与者相比,中风参与者在直接反馈(非瘫痪侧)情况下的MRCP侧化负性降低。有趣的是,与直接反馈情况相比,在镜像反馈(非瘫痪侧)情况下电位更强,在FC3[95%置信区间(0.75 13.2)]和C2[95%置信区间(0.04 9.52)]处双侧负性明显更多。具身镜像视觉反馈可能会影响健康参与者和中风患者在运动准备和执行过程中MRCP所观察到的双侧感觉运动皮层阈下活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f9e/8239222/b4ff75c1de34/fneur-12-646886-g0001.jpg

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