Tolbert D L, Bantli H, Bloedel J R
J Comp Neurol. 1978 Nov 1;182(1):39-56. doi: 10.1002/cne.901820104.
The organization of the cerebellar nucleocortical projection in the cat and the monkey has been studied using orthograde and retrograde neuroanatomical tracing techniques. Injections of tritiated leucine in the cat cerebellar nuclei orthogradely labeled nucleocortical fibers throughout their course to the cerebellar cortex. Their branch points in the corpus medullare, in the folial white matter, and in the granular layer were evident from the dense, continuous distribution of silver grains overlying these labeled axons. The results from the cat showed that the cerebellar nucleocortical projection is organized principally into three rostrocaudally oriented longitudinal cortical zones. Fastigial nucleocortical fibers were directed principally to the medial 1.5-2.5 mm of the ipsilateral vermis, with a lighter projection to the lateral vermis ipsilaterally and to the medial area of the vermis contralaterally. The interposed nuclei projected mainly to the paravermis-medial hemispheric zone of the cerebellar cortex. Nucleocortical fibers from the posterior interposed nucleus projected principally to the paramedian lobule, to the medial hemispheric area of Crus I and the lobus simplex, and to the flocculus and paraflocculus. Nucleocortical projections from the anterior interposed nucleus coursed to the anterior lobe paravermis and to the ventral folia of the paramedian lobule. A lighter projection from the interposed nuceli was found to the lateral edge of the vermis and into intermediate areas of the hemisphere. Dentatocortical fibers were directed into the lateral folia of Crus I and Crus II of the lateral hemispheric zone, with a ligher projection to intermediate areas of the hemisphere of the posterior lobe and along the lateral edge of the anterior lobe hemisphere. Along the periphery of each cortical zone, the nucleocortical projection from adjacent deep nuclei overlapped slightly. The retrograde transport of horseradish peroxidase (HRP) from injection sites in the lateral hemisphere, in the medial hemisphere--paravermis, and in the vermis labeled neurons localized mainly within the dentate, interposed, and fastigial nuclei, respectively. Retrograde labeling experiments carried out in monkeys indicated that the organization of the nucleocortical projection in this species is different than that of the cat. In the primate, the nucleocortical projection to the lateral hemisphere, to the medial hemisphere--paravermis, and to the vermis appeared to arise principally from the dentate nucleus. There was a secondary input to the paravermis and vermis arising from the interposed and fastigial nuclei, respectively. This evidence suggests that the cerebellar nucleocortical system undergoes a significant phylogenetic change in its organization between the cat and primate. These organization differences are discussed in light of possible functional implications.
利用顺行和逆行神经解剖示踪技术,对猫和猴小脑核皮质投射的组织架构进行了研究。在猫的小脑核中注射氚标记的亮氨酸,顺行标记了核皮质纤维从其起始部位到小脑皮质的全程。在髓质、小叶白质和颗粒层中的分支点,可通过覆盖这些标记轴突的密集、连续银粒分布得以显现。猫的研究结果表明,小脑核皮质投射主要组织成三个 rostrocaudally 定向的纵向皮质区。顶核皮质纤维主要投射到同侧蚓部内侧 1.5 - 2.5 毫米处,向同侧蚓部外侧及对侧蚓部内侧区域的投射较淡。间位核主要投射到小脑皮质的旁中央小叶 - 内侧半球区。后间位核的核皮质纤维主要投射到旁中央小叶、 Crus I 和单小叶的内侧半球区以及绒球和旁绒球。前间位核的核皮质投射到达前叶旁中央小叶和旁中央小叶的腹侧小叶。间位核向蚓部外侧边缘和半球中间区域有较淡的投射。齿状核皮质纤维投射到外侧半球区 Crus I 和 Crus II 的外侧小叶,向后叶半球中间区域及沿前叶半球外侧边缘有较淡的投射。在每个皮质区的周边,相邻深核的核皮质投射略有重叠。将辣根过氧化物酶(HRP)从外侧半球、内侧半球 - 旁中央小叶及蚓部的注射部位逆行运输,分别标记了主要位于齿状核、间位核和顶核内的神经元。在猴身上进行的逆行标记实验表明,该物种的核皮质投射组织架构与猫不同。在灵长类动物中,向外侧半球、内侧半球 - 旁中央小叶及蚓部的核皮质投射似乎主要起源于齿状核。分别有来自间位核和顶核的对旁中央小叶和蚓部的次要输入。这一证据表明,小脑核皮质系统在猫和灵长类动物之间其组织架构经历了显著的系统发育变化。根据可能的功能影响对这些组织架构差异进行了讨论。