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基于内在功能连接估计的人类小脑组织。

The organization of the human cerebellum estimated by intrinsic functional connectivity.

机构信息

Howard Hughes Medical Institute, Cambridge, Massachusetts, USA.

出版信息

J Neurophysiol. 2011 Nov;106(5):2322-45. doi: 10.1152/jn.00339.2011. Epub 2011 Jul 27.

Abstract

The cerebral cortex communicates with the cerebellum via polysynaptic circuits. Separate regions of the cerebellum are connected to distinct cerebral areas, forming a complex topography. In this study we explored the organization of cerebrocerebellar circuits in the human using resting-state functional connectivity MRI (fcMRI). Data from 1,000 subjects were registered using nonlinear deformation of the cerebellum in combination with surface-based alignment of the cerebral cortex. The foot, hand, and tongue representations were localized in subjects performing movements. fcMRI maps derived from seed regions placed in different parts of the motor body representation yielded the expected inverted map of somatomotor topography in the anterior lobe and the upright map in the posterior lobe. Next, we mapped the complete topography of the cerebellum by estimating the principal cerebral target for each point in the cerebellum in a discovery sample of 500 subjects and replicated the topography in 500 independent subjects. The majority of the human cerebellum maps to association areas. Quantitative analysis of 17 distinct cerebral networks revealed that the extent of the cerebellum dedicated to each network is proportional to the network's extent in the cerebrum with a few exceptions, including primary visual cortex, which is not represented in the cerebellum. Like somatomotor representations, cerebellar regions linked to association cortex have separate anterior and posterior representations that are oriented as mirror images of one another. The orderly topography of the representations suggests that the cerebellum possesses at least two large, homotopic maps of the full cerebrum and possibly a smaller third map.

摘要

大脑皮层通过多突触回路与小脑进行交流。小脑的不同区域与不同的大脑区域相连,形成了复杂的拓扑结构。在这项研究中,我们使用静息态功能连接磁共振成像(fcMRI)探索了人类的cerebrocerebellar 回路的组织。使用小脑的非线性变形和大脑皮层的表面对齐来注册来自 1000 个主体的数据。在进行运动的主体中,对足部、手部和舌部的代表区域进行定位。从放置在运动身体代表的不同部分的种子区域得出的 fcMRI 图谱产生了预期的前叶躯体感觉地形图倒置图和后叶直立图。接下来,我们通过在 500 个样本中估计小脑的每个点在大脑中的主要目标,来绘制小脑的完整地形图,并在 500 个独立样本中复制了地形图。大部分小脑映射到联合区域。对 17 个不同的大脑网络的定量分析表明,小脑专门用于每个网络的程度与大脑中该网络的程度成正比,除了少数例外,包括初级视觉皮层,它在小脑中没有表示。与躯体感觉代表一样,与联合皮层相连的小脑区域具有单独的前后代表,彼此镜像排列。代表的有序拓扑结构表明小脑至少具有两个大脑的全脑大、同型地图,并且可能具有较小的第三个地图。

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