Palesi Fulvia, Tournier Jacques-Donald, Calamante Fernando, Muhlert Nils, Castellazzi Gloria, Chard Declan, D'Angelo Egidio, Wheeler-Kingshott Claudia A M
Department of Physics, University of Pavia, Via Bassi 6, 27100, Pavia, Italy.
Brain Connectivity Center, C. Mondino National Neurological Institute, Via Mondino 2, 27100, Pavia, Italy.
Brain Struct Funct. 2015 Nov;220(6):3369-84. doi: 10.1007/s00429-014-0861-2. Epub 2014 Aug 19.
In addition to motor functions, it has become clear that in humans the cerebellum plays a significant role in cognition too, through connections with associative areas in the cerebral cortex. Classical anatomy indicates that neo-cerebellar regions are connected with the contralateral cerebral cortex through the dentate nucleus, superior cerebellar peduncle, red nucleus and ventrolateral anterior nucleus of the thalamus. The anatomical existence of these connections has been demonstrated using virus retrograde transport techniques in monkeys and rats ex vivo. In this study, using advanced diffusion MRI tractography we show that it is possible to calculate streamlines to reconstruct the pathway connecting the cerebellar cortex with contralateral cerebral cortex in humans in vivo. Corresponding areas of the cerebellar and cerebral cortex encompassed similar proportion (about 80%) of the tract, suggesting that the majority of streamlines passing through the superior cerebellar peduncle connect the cerebellar hemispheres through the ventrolateral thalamus with contralateral associative areas. This result demonstrates that this kind of tractography is a useful tool to map connections between the cerebellum and the cerebral cortex and moreover could be used to support specific theories about the abnormal communication along these pathways in cognitive dysfunctions in pathologies ranging from dyslexia to autism.
除了运动功能外,现在已经明确,在人类中,小脑通过与大脑皮层联合区域的连接,在认知中也发挥着重要作用。经典解剖学表明,新小脑区域通过齿状核、上小脑脚、红核和丘脑腹外侧前核与对侧大脑皮层相连。这些连接的解剖学存在已在体外使用病毒逆行运输技术在猴子和大鼠中得到证实。在本研究中,我们使用先进的扩散磁共振成像纤维束成像技术表明,在人体活体中计算流线以重建连接小脑皮层与对侧大脑皮层的通路是可行的。小脑和大脑皮层的相应区域在纤维束中所占比例相似(约80%),这表明大多数穿过上小脑脚的流线通过腹外侧丘脑将小脑半球与对侧联合区域相连。这一结果表明,这种纤维束成像技术是绘制小脑与大脑皮层之间连接的有用工具,而且可用于支持关于从诵读困难到自闭症等各种病理状态下认知功能障碍中这些通路异常通讯的特定理论。