Rousseau Paul-Noel, Chakravarty M Mallar, Steele Christopher J
Department of Psychology, Concordia University, Montreal, QC, Canada.
Cerebral Imaging Center, Douglas Mental Health University Institute, McGill University, Montreal, QC, Canada; Department of Psychiatry, McGill University, Montreal, QC, Canada; Biological and Biomedical Engineering, McGill University, Montreal, QC, Canada.
Neuroimage. 2022 Dec 1;264:119684. doi: 10.1016/j.neuroimage.2022.119684. Epub 2022 Oct 14.
The cerebellum's involvement in cognitive, affective and motor functions is mediated by connections to different regions of the cerebral cortex. A distinctive feature of cortico-cerebellar loops that has been demonstrated in the animal work is a topographic organization that is preserved across its corticopontine, pontocerebellar, and cerebello-thalmo-cortical segments. Here we used tractography derived from diffusion imaging data to characterize the connections between the pons and the individual lobules of the cerebellum and generate a parcellation of the pons and middle cerebellar peduncle based on the pattern of connectivity. We identified a rostral to caudal gradient in the pons, similar to that observed in the animal work, such that rostral regions were preferentially connected to cerebellar lobules involved in non-motor, and caudal regions with motor regions. These findings advance our fundamental understanding of the cerebellum, and the parcellations we generated provide context for future research into the pontocerebellar tract's involvement in health and disease.
小脑在认知、情感和运动功能方面的参与是通过与大脑皮层不同区域的连接来介导的。在动物实验中已证明的皮质-小脑环路的一个显著特征是其拓扑组织,该组织在其皮质脑桥、脑桥小脑和小脑丘脑皮质节段中得以保留。在这里,我们使用从扩散成像数据中得出的纤维束成像来表征脑桥与小脑各个小叶之间的连接,并根据连接模式对脑桥和小脑中脚进行分割。我们在脑桥中发现了从嘴侧到尾侧的梯度,这与在动物实验中观察到的情况类似,即嘴侧区域优先连接到参与非运动功能的小脑小叶,而尾侧区域则与运动区域相连。这些发现推进了我们对小脑的基本理解,并且我们生成的分割为未来研究脑桥小脑束在健康和疾病中的作用提供了背景。