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首页> 外文期刊>Neuroscience and Biobehavioral Reviews >Large-scale functional network overlap is a general property of brain functional organization: Reconciling inconsistent fMRI findings from general-linear-model-based analyses
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Large-scale functional network overlap is a general property of brain functional organization: Reconciling inconsistent fMRI findings from general-linear-model-based analyses

机译:大型功能网络重叠是大脑功能组织的一般属性:调和基于通用线性模型的分析中不一致的功能磁共振成像结果

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摘要

Functional magnetic resonance imaging (fMRI) studies regularly use univariate general-linear-model based analyses (GLM). Their findings are often inconsistent across different studies, perhaps because of several fundamental brain properties including functional heterogeneity, balanced excitation and inhibition (E/I), and sparseness of neuronal activities. These properties stipulate heterogeneous neuronal activities in the same voxels and likely limit the sensitivity and specificity of GLM. This paper selectively reviews findings of histological and electrophysiological studies and fMRI spatial independent component analysis (sICA) and reports new findings by applying sICA to two existing datasets. The extant and new findings consistently demonstrate several novel features of brain functional organization not revealed by GLM. They include overlap of large-scale functional networks (FNs) and their concurrent opposite modulations, and no significant modulations in activity of most FNs across the whole brain during any task conditions. These novel features of brain functional organization are highly consistent with the brain's properties of functional heterogeneity, balanced E/I, and sparseness of neuronal activity, and may help reconcile inconsistent GLM findings. (C) 2016 Elsevier Ltd. All rights reserved.
机译:功能磁共振成像(fMRI)研究通常使用基于单变量一般线性模型的分析(GLM)。在不同的研究中,他们的发现常常不一致,这可能是由于几种基本的大脑特性,包括功能异质性,平衡的兴奋和抑制(E / I)以及神经活动的稀疏性。这些特性规定了相同体素中异质神经元的活动,并可能限制了GLM的敏感性和特异性。本文选择性地回顾了组织学和电生理学研究的结果以及功能磁共振成像空间独立成分分析(sICA),并通过将sICA应用到两个现有数据集来报告新发现。现有的和新的发现一致地证明了GLM没有揭示出大脑功能组织的几个新颖特征。它们包括大规模功能网络(FN)的重叠及其并发的相反调制,并且在任何任务条件下,整个大脑中大多数FN的活动都没有明显的调制。大脑功能组织的这些新颖特征与大脑的功能异质性,平衡的E / I和神经元活动的稀疏性高度一致,并且可能有助于调和不一致的GLM发现。 (C)2016 Elsevier Ltd.保留所有权利。

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