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White Matter Connectivity of the Thalamus Delineates the Functional Architecture of Competing Thalamocortical Systems

机译:Thalamus的白色物质连通性描述了竞争性丘脑皮质系统的功能架构

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摘要

There is an increasing awareness of the involvement of thalamic connectivity on higher level cortical functioning in the human brain. This is reflected by the influence of thalamic stimulation on cortical activity and behavior as well as apparently cortical lesion syndromes occurring as a function of small thalamic insults. Here, we attempt to noninvasively test the correspondence of structural and functional connectivity of the human thalamus using diffusion-weighted and resting-state functional MRI. Using a large sample of 102 adults, we apply tensor independent component analysis to diffusion MRI tractography data to blindly parcellate bilateral thalamus according to diffusion tractography-defined structural connectivity. Using resting-state functional MRI collected in the same subjects, we show that the resulting structurally defined thalamic regions map to spatially distinct, and anatomically predictable, whole-brain functional networks in the same subjects. Although there was significant variability in the functional connectivity patterns, the resulting 51 structural and functional patterns could broadly be reduced to a subset of 7 similar core network types. These networks were distinct from typical cortical resting-state networks. Importantly, these networks were distributed across the brain and, in a subset, map extremely well to known thalamocortico-basal-ganglial loops.
机译:人们越来越意识到丘脑连通性参与了人类大脑中更高水平的皮质功能。丘脑刺激对皮层活动和行为的影响以及由于小丘脑损伤而引起的皮层病变综合征显然反映了这一点。在这里,我们尝试使用扩散加权和静止状态功能MRI来无创地测试人丘脑的结构和功能连接性。我们使用102名成年人的大量样本,将张量独立分量分析应用于弥散MRI描记术数据,以根据弥散描记术定义的结构连通性盲目分割双侧丘脑。使用在相同受试者中收集的静息态功能MRI,我们显示了在结构上定义的丘脑区域映射到相同受试者中空间上不同且在解剖学上可预测的全脑功能网络。尽管功能连接模式存在很大的可变性,但所得的51种结构和功能模式可以广泛地简化为7种相似核心网络类型的子集。这些网络不同于典型的皮质静止状态网络。重要的是,这些网络分布在整个大脑中,并且在一个子集中非常映射到已知的丘脑基底膜-基底-神经节环。

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