FMRIB Centre, Department of Clinical Neurology, University of Oxford, OX1 9DU Oxford, UK.
Cereb Cortex. 2010 Apr;20(4):953-65. doi: 10.1093/cercor/bhp157. Epub 2009 Aug 14.
The cerebellum processes information from functionally diverse regions of the cerebral cortex. Cerebellar input and output nuclei have connections with prefrontal, parietal, and sensory cortex as well as motor and premotor cortex. However, the topography of the connections between the cerebellar and cerebral cortices remains largely unmapped, as it is relatively unamenable to anatomical methods. We used resting-state functional magnetic resonance imaging to define subregions within the cerebellar cortex based on their functional connectivity with the cerebral cortex. We mapped resting-state functional connectivity voxel-wise across the cerebellar cortex, for cerebral-cortical masks covering prefrontal, motor, somatosensory, posterior parietal, visual, and auditory cortices. We found that the cerebellum can be divided into at least 2 zones: 1) a primary sensorimotor zone (Lobules V, VI, and VIII), which contains overlapping functional connectivity maps for domain-specific motor, somatosensory, visual, and auditory cortices; and 2) a supramodal zone (Lobules VIIa, Crus I, and II), which contains overlapping functional connectivity maps for prefrontal and posterior-parietal cortex. The cortical connectivity of the supramodal zone was driven by regions of frontal and parietal cortex which are not directly involved in sensory or motor processing, including dorsolateral prefrontal cortex and the frontal pole, and the inferior parietal lobule.
小脑处理来自大脑皮层不同功能区域的信息。小脑的输入和输出核与前额叶、顶叶和感觉皮层以及运动和运动前皮层都有联系。然而,小脑和大脑皮层之间连接的拓扑结构在很大程度上仍然没有被绘制出来,因为它相对不容易被解剖学方法所描绘。我们使用静息态功能磁共振成像来定义小脑皮层内的亚区,这些亚区是基于它们与大脑皮层的功能连接来定义的。我们对大脑皮层覆盖的前额叶、运动、体感、后顶叶、视觉和听觉皮层的小脑皮层进行了静息态功能连接体素映射。我们发现,小脑至少可以分为 2 个区:1)一个主要的感觉运动区(V、VI 和 VIII 叶),包含特定于运动、体感、视觉和听觉皮层的重叠功能连接图;2)一个超模态区(VIIa 叶、 Crus I 和 II),包含与前额叶和顶叶后区的重叠功能连接图。超模态区的皮质连接由不直接参与感觉或运动处理的额顶叶区域驱动,包括背外侧前额叶皮层和额极,以及下顶叶叶。