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脑电图在视动跟踪任务中触觉反馈的相关性。

EEG correlates of haptic feedback in a visuomotor tracking task.

机构信息

Brain Research Center, University System of Taiwan, Hsinchu, Taiwan.

出版信息

Neuroimage. 2012 May 1;60(4):2258-73. doi: 10.1016/j.neuroimage.2012.02.008. Epub 2012 Feb 13.

Abstract

This study investigates the temporal brain dynamics associated with haptic feedback in a visuomotor tracking task. Haptic feedback with deviation-related forces was used throughout tracking experiments in which subjects' behavioral responses and electroencephalogram (EEG) data were simultaneously measured. Independent component analysis was employed to decompose the acquired EEG signals into temporally independent time courses arising from distinct brain sources. Clustering analysis was used to extract independent components that were comparable across participants. The resultant independent brain processes were further analyzed via time-frequency analysis (event-related spectral perturbation) and event-related coherence (ERCOH) to contrast brain activity during tracking experiments with or without haptic feedback. Across subjects, in epochs with haptic feedback, components with equivalent dipoles in or near the right motor region exhibited greater alpha band power suppression. Components with equivalent dipoles in or near the left frontal, central, left motor, right motor, and parietal regions exhibited greater beta-band power suppression, while components with equivalent dipoles in or near the left frontal, left motor, and right motor regions showed greater gamma-band power suppression relative to non-haptic conditions. In contrast, the right occipital component cluster exhibited less beta-band power suppression in epochs with haptic feedback compared to non-haptic conditions. The results of ERCOH analysis of the six component clusters showed that there were significant increases in coherence between different brain networks in response to haptic feedback relative to the coherence observed when haptic feedback was not present. The results of this study provide novel insight into the effects of haptic feedback on the brain and may aid the development of new tools to facilitate the learning of motor skills.

摘要

本研究调查了与视动跟踪任务中的触觉反馈相关的时间大脑动力学。在整个跟踪实验中使用了与偏差相关的力的触觉反馈,在此期间同时测量了受试者的行为反应和脑电图(EEG)数据。独立成分分析被用来将获得的 EEG 信号分解为来自不同大脑源的时间独立的时间过程。聚类分析用于提取参与者之间可比较的独立成分。通过时频分析(事件相关谱微扰)和事件相关相干(ERCOH)进一步分析所得的独立大脑过程,以对比有触觉反馈和无触觉反馈的跟踪实验期间的大脑活动。在跨主题的实验中,在具有触觉反馈的时期,在右运动区域或附近具有等效偶极子的成分表现出更大的阿尔法波段功率抑制。在左额、中央、左运动、右运动和顶叶区域或附近具有等效偶极子的成分表现出更大的贝塔波段功率抑制,而在左额、左运动和右运动区域或附近具有等效偶极子的成分表现出比非触觉条件更大的伽马波段功率抑制。相比之下,在具有触觉反馈的时期,右枕部成分簇的β波段功率抑制较小。六个成分簇的 ERCOH 分析结果表明,与没有触觉反馈时观察到的相干性相比,对触觉反馈的大脑不同网络之间的相干性显著增加。这项研究的结果提供了关于触觉反馈对大脑影响的新见解,并可能有助于开发新工具,以促进运动技能的学习。

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