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脑电生理学和成像的脑磁图。

Magnetoencephalography for brain electrophysiology and imaging.

机构信息

McConnell Brain Imaging Centre, Montreal Neurological Institute, McGill University, Montreal, Quebec, Canada.

出版信息

Nat Neurosci. 2017 Feb 23;20(3):327-339. doi: 10.1038/nn.4504.

Abstract

We review the aspects that uniquely characterize magnetoencephalography (MEG) among the techniques available to explore and resolve brain function and dysfunction. While emphasizing its specific strengths in terms of millisecond source imaging, we also identify and discuss current practical challenges, in particular in signal extraction and interpretation. We also take issue with some perceived disadvantages of MEG, including the misconception that the technique is redundant with electroencephalography. Overall, MEG contributes uniquely to our deeper comprehension of both regional and large-scale brain dynamics: from the functions of neural oscillations and the nature of event-related brain activation, to the mechanisms of functional connectivity between regions and the emergence of modes of network communication in brain systems. We expect MEG to play an increasing and pivotal role in the elucidation of these grand mechanistic principles of cognitive, systems and clinical neuroscience.

摘要

我们回顾了在探索和解决大脑功能和障碍的可用技术中,脑磁图(MEG)所具有的独特特征。在强调其在毫秒级源成像方面的特定优势的同时,我们还确定并讨论了当前的实际挑战,特别是在信号提取和解释方面。我们还对 MEG 被认为的一些缺点提出质疑,包括认为该技术与脑电图重复的误解。总的来说,MEG 为我们更深入地理解大脑的区域和大规模动力学提供了独特的贡献:从神经振荡的功能和事件相关脑激活的本质,到区域之间功能连接的机制以及大脑系统中网络通信模式的出现。我们预计 MEG 将在阐明认知、系统和临床神经科学的这些重要机制原理方面发挥越来越重要的作用。

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