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首页> 外文期刊>NeuroImage >Resting-state functional connectivity of the vermal and hemispheric subregions of the cerebellum with both the cerebral cortical networks and subcortical structures
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Resting-state functional connectivity of the vermal and hemispheric subregions of the cerebellum with both the cerebral cortical networks and subcortical structures

机译:小脑的正常和半球子区域与大脑皮层网络和皮层下结构的静止状态功能连接

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The human cerebellum is a heterogeneous structure, and the pattern of resting-state functional connectivity (rsFC) of each subregion has not yet been fully characterized. We aimed to systematically investigate rsFC pattern of each cerebellar subregion in 228 healthy young adults. Voxel-based analysis revealed that several subregions showed similar rsFC patterns, reflecting functional integration; however, different subregions displayed distinct rsFC patterns, representing functional segregation. The same vermal and hemispheric subregions showed either different patterns or different strengths of rsFCs with the cerebrum, and different subregions of lobules VII and VIII displayed different rsFC patterns. Region of interest (ROI)-based analyses also confirmed these findings. Specifically, strong rsFCs were found: between lobules I-VI and vermal VIIb-IX and the visual network; between hemispheric VI, VIIb, VIIIa and the auditory network; between lobules I-VI, VIII and the sensorimotor network; between lobule IX, vermal VIIIb and the default-mode network; between lobule Crus I, hemispheric Crus II and the fronto-parietal network; between hemispheric VIIb, VIII and the task-positive network; between hemispheric VI, VIIb, VIII and the salience network; between most cerebellar subregions and the thalamus; between lobules V, VIIb and the midbrain red nucleus; between hemispheric Crus I, Crus II, vermal VIIIb, IX and the caudate nucleus; between lobules V, VI, VIIb, VIIIa and the pallidum and putamen; and between lobules I-V, hemispheric VIII, IX and the hippocampus and amygdala. These results confirm the existence of both functional integration and segregation among cerebellar subregions and largely improve our understanding of the functional organization of the human cerebellum.
机译:人类小脑是一种异质结构,每个子区域的静止状态功能连接(rsFC)的模式尚未完全表征。我们旨在系统地调查228名健康的年轻人中每个小脑子区域的rsFC模式。基于体素的分析显示,几个子区域显示出相似的rsFC模式,反映了功能整合。但是,不同的子区域显示了不同的rsFC模式,代表了功能隔离。相同的顶部和半球形子区域与大脑的rsFC的模式不同或强度不同,小叶VII和VIII的不同子区域的rsFC模式不同。基于感兴趣区域(ROI)的分析也证实了这些发现。具体而言,发现了强的rsFC:在小叶I-VI和VIIb-IX与视觉网络之间;在半球VI,VIIb,VIIIa与听觉网络之间;在小叶I-VI,VIII和感觉运动网络之间;在小叶IX,正常VIIIb和默认模式网络之间;在小叶Crus I,半球Crus II和额顶网络之间;在半球VIIb,VIII和任务阳性网络之间;在半球VI,VIIb,VIII与显着网络之间;在大多数小脑子区域和丘脑之间;在小叶V,VIIb和中脑红色核之间;在半球Crus I,Crus II,Veral VIIIb,IX和尾状核之间;在小叶V,VI,VIIb,VIIIa与苍白球和壳核之间;在小叶I-V,半球VIII,IX与海马和杏仁核之间。这些结果证实了小脑次区域之间功能整合和隔离的存在,并在很大程度上提高了我们对人类小脑功能组织的理解。

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