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Measuring electrophysiological connectivity by power envelope correlation: a technical review on MEG methods

机译:通过功率包络相关性测量电生理连通性:MEG方法的技术综述

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摘要

The human brain can be divided into multiple areas, each responsible for different aspects of behaviour. Healthy brain function relies upon efficient connectivity between these areas and, in recent years, neuroimaging has been revolutionised by an ability to estimate this connectivity. In this paper we discuss measurement of network connectivity using magnetoencephalography (MEG), a technique capable of imaging electrophysiological brain activity with good (~5mm) spatial resolution and excellent (~1ms) temporal resolution. The rich information content of MEG facilitates many disparate measures of connectivity between spatially separate regions and in this paper we discuss a single metric known as power envelope correlation. We review in detail the methodology required to measure power envelope correlation including i) projection of MEG data into source space, ii) removing confounds introduced by the MEG inverse problem and iii) estimation of connectivity itself. In this way, we aim to provide researchers with a description of the key steps required to assess envelope based functional networks, which are thought to represent an intrinsic mode of coupling in the human brain. We highlight the principal findings of the techniques discussed, and furthermore, we show evidence that this method can probe how the brain forms and dissolves multiple transient networks on a rapid timescale in order to support current processing demand. Overall, power envelope correlation offers a unique and verifiable means to gain novel insights into network coordination and is proving to be of significant value in elucidating the neural dynamics of the human connectome in health and disease.
机译:人脑可分为多个区域,每个区域负责行为的不同方面。健康的大脑功能依赖于这些区域之间的有效连通性,近年来,神经成像技术已经通过估计这种连通性的能力而发生了革命性变化。在本文中,我们讨论了使用磁脑电图(MEG)来测量网络连通性的技术,该技术能够以良好的(〜5mm)空间分辨率和出色的(〜1ms)时间分辨率对脑电活动进行成像。 MEG的丰富信息内容有助于在空间上分开的区域之间进行许多不同的连通性度量,在本文中,我们讨论了一种称为功率包络相关的度量。我们将详细回顾测量功率包络相关性所需的方法,包括:i)将MEG数据投影到源空间中; ii)消除由MEG逆问题引入的混杂因素;以及iii)估计连通性本身。通过这种方式,我们旨在为研究人员提供评估基于包络的功能网络所需的关键步骤的描述,这些功能网络被认为代表了人脑中一种固有的耦合方式。我们重点介绍了所讨论技术的主要发现,此外,我们证明了该方法可以探测大脑如何在快速的时间尺度上形成并溶解多个瞬态网络,从而支持当前的处理需求。总体而言,功率包络相关性提供了一种独特且可验证的方法,以获得对网络协调的新颖见解,并且在阐明人类连接组在健康和疾病中的神经动力学方面被证明具有重要价值。

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