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MEG-SIM: AWeb Portal for Testing MEG Analysis Methods using Realistic Simulated and Empirical Data

机译:MEG-SIM:AWeb门户,用于使用真实的模拟和经验数据测试MEG分析方法

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摘要

MEG and EEG measure electrophysiologi calactivity in the brain with exquisite temporal resolution.Because of this unique strength relative to noninvasive hemodynamic-based measures (fMRI, PET), the complementary nature of hemodynamic and electrophysiological techniques is becoming more widely recognized (e.g.,Human Connectome Project). However, the available analysis methods for solving the inverse problem for MEG and EEG have not been compared and standardized to the extent that they have for fMRI/PET. A number of factors, including the non-uniqueness of the solution to the inverse problem for MEG/EEG, have led to multiple analysis techniques which have not been tested on consistent datasets, making direct comparisons of techniques challenging (or impossible). Since each of the methods is known to have their own set of strengths and weaknesses, it would be beneficial to quantify them. Toward this end, we are announcing the establishment of a website containing an extensive series of realistic simulated data for testing purposes (http://cobre.mrn.org/ megsim/). Here, we present: 1) a brief overview of the basic types of inverse procedures; 2) the rationale and description of the testbed created; and 3) cases emphasizing functional connectivity (e.g., oscillatory activity) suitable for a wide assortment of analyses including independent component analysis (ICA), Granger Causality/Directed transfer function, and single-trial analysis.
机译:MEG和EEG以出色的时间分辨率来测量大脑中的电生理功能项目)。然而,尚未解决解决MEG和EEG逆问题的可用分析方法,并且未将其标准化到fMRI / PET所能达到的程度。许多因素,包括对MEG / EEG逆问题解的不唯一性,导致了多种分析技术尚未在一致的数据集上进行测试,这使得直接比较技术具有挑战性(或不可能)。由于已知每种方法都有其各自的优缺点,因此量化它们将是有益的。为此,我们宣布建立一个包含大量用于测试目的的逼真的模拟数据的网站(http://cobre.mrn.org/ megsim /)。在这里,我们介绍:1)逆过程的基本类型的简要概述; 2)创建的测试平台的原理和描述; 3)强调适用于各种分析的功能连通性(例如,振荡活动)的案例,包括独立成分分析(ICA),格兰杰因果关系/定向传递函数和单项试验分析。

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