Aumann T D, Rawson J A, Pichitpornchai C, Horne M K
Department of Anatomy, Monash University, Clayton, Victoria, Australia.
J Comp Neurol. 1996 May 13;368(4):608-19. doi: 10.1002/(SICI)1096-9861(19960513)368:4<608::AID-CNE11>3.0.CO;2-D.
It is generally agreed that cerebellar and lemniscal pathways project to largely separate areas of the thalamus and influence different functional areas of the cerebral cortex. Cerebellar afferents arise from neurones in the deep cerebellar nuclei and terminate in the ventral lateral group of thalamic nuclei or the "motor thalamus," whereas lemniscal afferents arise from the dorsal column nuclei and terminate in the adjacent ventral posterior group of thalamic nuclei or "sensory thalamus." However, it remains unclear whether or not these pathways converge onto thalamic neurones in the border zone between motor and sensory thalamus. The aim of this study was to compare directly the locations of cerebellar interposed and dorsal column nuclei terminals in the rat thalamus by using a double anterograde labelling technique. Microinjections of dextran-tetramethylrhodamine and dextran-fluorescein were made into the interposed and dorsal column nuclei, and labelled terminals in the thalamus were examined in the same sections. The labelled cerebellar and lemniscal terminals were located in separate areas throughout most of the ventral lateral and ventral posterior lateral nuclei, and there was only a limited region around the rostral border between these nuclei where the two groups of terminals came in close proximity to each other. In this common projection zone, however, cerebellar and lemniscal terminals seldom intermingled, and they mostly occupied separate, discreet areas. The results show that cerebellar and lemniscal fibres do indeed project to the border zone between the sensory and cerebellar thalamic nuclei, but they show practically no overlap in this region and are likely to influence separate thalamic neurones.
人们普遍认为,小脑和薄束通路投射到丘脑的大部分不同区域,并影响大脑皮层的不同功能区域。小脑传入神经起源于小脑深部核团中的神经元,终止于丘脑腹外侧核群或“运动丘脑”,而薄束传入神经起源于薄束核,终止于相邻的丘脑腹后核群或“感觉丘脑”。然而,这些通路是否在运动丘脑和感觉丘脑之间的边界区域汇聚到丘脑神经元上仍不清楚。本研究的目的是通过使用双重顺行标记技术,直接比较大鼠丘脑中脑桥核和薄束核终末的位置。将右旋糖酐四甲基罗丹明和右旋糖酐荧光素微量注射到脑桥核和薄束核中,并在同一切片中检查丘脑中的标记终末。在腹外侧核和腹后外侧核的大部分区域,标记的小脑和薄束终末位于不同的区域,在这些核之间的嘴侧边界周围只有一个有限的区域,两组终末彼此靠近。然而,在这个共同的投射区域,小脑和薄束终末很少混合在一起,它们大多占据各自独立的区域。结果表明,小脑和薄束纤维确实投射到感觉丘脑核和小脑丘脑核之间的边界区域,但它们在该区域几乎没有重叠,并且可能影响不同的丘脑神经元。