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监测 VR 中的大脑活动:EEG 和神经影像学。

Monitoring Brain Activity in VR: EEG and Neuroimaging.

机构信息

Department of Psychology, Faculty for Life Sciences, MSH Medical School Hamburg, Hamburg, Germany.

ICAN Institute for Cognitive and Affective Neuroscience, MSH Medical School Hamburg, Hamburg, Germany.

出版信息

Curr Top Behav Neurosci. 2023;65:47-71. doi: 10.1007/7854_2023_423.

Abstract

Virtual reality (VR) is increasingly used in neuroscientific research to increase ecological validity without sacrificing experimental control, to provide a richer visual and multisensory experience, and to foster immersion and presence in study participants, which leads to increased motivation and affective experience. But the use of VR, particularly when coupled with neuroimaging or neurostimulation techniques such as electroencephalography (EEG), functional magnetic resonance imaging (fMRI), or transcranial magnetic stimulation (TMS), also yields some challenges. These include intricacies of the technical setup, increased noise in the data due to movement, and a lack of standard protocols for data collection and analysis. This chapter examines current approaches to recording, pre-processing, and analyzing electrophysiological (stationary and mobile EEG), as well as neuroimaging data recorded during VR engagement. It also discusses approaches to synchronizing these data with other data streams. In general, previous research has used a range of different approaches to technical setup and data processing, and detailed reporting of procedures is urgently needed in future studies to ensure comparability and replicability. More support for open-source VR software as well as the development of consensus and best practice papers on issues such as the handling of movement artifacts in mobile EEG-VR will be essential steps in ensuring the continued success of this exciting and powerful technique in neuroscientific research.

摘要

虚拟现实(VR)在神经科学研究中越来越多地被用于提高生态有效性,同时不牺牲实验控制,提供更丰富的视觉和多感觉体验,并促进研究参与者的沉浸感和存在感,从而提高动机和情感体验。但是,VR 的使用,特别是当与神经影像学或神经刺激技术(如脑电图(EEG)、功能磁共振成像(fMRI)或经颅磁刺激(TMS))结合使用时,也会带来一些挑战。这些挑战包括技术设置的复杂性、由于运动导致的数据噪声增加,以及缺乏数据收集和分析的标准协议。本章探讨了记录、预处理和分析脑电图(固定和移动 EEG)以及在 VR 参与期间记录的神经影像学数据的当前方法。它还讨论了将这些数据与其他数据流同步的方法。一般来说,以前的研究已经使用了一系列不同的技术设置和数据处理方法,在未来的研究中迫切需要详细报告程序,以确保可比性和可重复性。更多地支持开源 VR 软件,以及就移动 EEG-VR 中的运动伪影处理等问题制定共识和最佳实践文件,将是确保该令人兴奋和强大的技术在神经科学研究中持续成功的关键步骤。

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