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Dissociable Connectivity within Human Angular Gyrus and Intraparietal Sulcus: Evidence from Functional and Structural Connectivity

机译:人角回和腹腔沟内的可分离连通性:来自功能和结构连通性的证据

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摘要

The inferior parietal lobule (IPL) of the human brain is a heterogeneous region involved in visuospatial attention, memory, and mathematical cognition. Detailed description of connectivity profiles of subdivisions within the IPL is critical for accurate interpretation of functional neuroimaging studies involving this region. We separately examined functional and structural connectivity of the angular gyrus (AG) and the intraparietal sulcus (IPS) using probabilistic cytoarchitectonic maps. Regions-of-interest (ROIs) included anterior and posterior AG subregions (PGa, PGp) and 3 IPS subregions (hIP2, hIP1, and hIP3). Resting-state functional connectivity analyses showed that PGa was more strongly linked to basal ganglia, ventral premotor areas, and ventrolateral prefrontal cortex, while PGp was more strongly connected with ventromedial prefrontal cortex, posterior cingulate, and hippocampus—regions comprising the default mode network. The anterior-most IPS ROIs, hIP2 and hIP1, were linked with ventral premotor and middle frontal gyrus, while the posterior-most IPS ROI, hIP3, showed connectivity with extrastriate visual areas. In addition, hIP1 was connected with the insula. Tractography using diffusion tensor imaging revealed structural connectivity between most of these functionally connected regions. Our findings provide evidence for functional heterogeneity of cytoarchitectonically defined subdivisions within IPL and offer a novel framework for synthesis and interpretation of the task-related activations and deactivations involving the IPL during cognition.
机译:人脑的顶下小叶(IPL)是涉及视觉空间注意力,记忆力和数学认知的异质区域。 IPL内各个细分的连通性配置文件的详细描述对于准确解释涉及该区域的功能性神经影像学研究至关重要。我们使用概率细胞结构图分别检查了角回(AG)和顶内沟(IPS)的功能和结构连接性。感兴趣区域(ROI)包括前AG区域和后AG子区域(PGa,PGp)和3个IPS子区域(hIP2,hIP1和hIP3)。静止状态功能连通性分析表明,PGa与基底神经节,腹侧前运动区和腹侧前额叶皮层更紧密地关联,而PGp与腹侧前额叶皮层,后扣带和海马体更紧密地连接,这些区域构成默认模式网络。最靠前的IPS ROIs,hIP2和hIP1与腹侧运动前和中额回有关,而最靠后的IPS ROI,hIP3显示与视线的连通性。此外,hIP1与绝缘体相连。使用扩散张量成像的术式揭示了大多数这些功能连接区域之间的结构连通性。我们的发现为IPL内细胞结构定义的细分的功能异质性提供了证据,并为在认知过程中涉及IPL的与任务相关的激活和失活的合成和解释提供了新的框架。

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