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皮质-脑桥-小脑通路至背侧旁绒球的组织架构。一项在猫身上运用WGA-HRP顺行和逆行运输的实验研究。

Organization of the cortico-ponto-cerebellar pathway to the dorsal paraflocculus. An experimental study with anterograde and retrograde transport of WGA-HRP in the cat.

作者信息

Broch-Smith T, Brodal P

机构信息

Anatomical Institute, University of Oslo, Norway.

出版信息

Arch Ital Biol. 1990 Jul;128(2-4):249-71.

PMID:1702610
Abstract

To reveal the organization and relative magnitude of connections from various parts of the cerebral cortex to the dorsal paraflocculus via the pontine nuclei, WGA-HRP was injected in the dorsal paraflocculus in conjunction with injection of the same tracer in various parts of the cerebral cortex in 17 cats. Termination areas of cortical fibres (anterogradely labelled) and pontine neurons projecting to the dorsal paraflocculus (retrogradely labelled) were carefully plotted in serial transverse sections. As an average of countings in ten cats, 90% of the labelled cells were found in the pontine nuclei contralateral to the injection, and the majority (70%) were located in the rostral half of the nuclei. The highest degree of overlap between anterograde and retrograde labelling was found after injections of the parietal association cortex (areas 5 and 7). In an experiment with double anterograde tracing, it was shown that both area 5 and 7 contribute substantially to the cerebral inputs to the dorsal paraflocculus. High degree of overlap also occurred after injections of several visual cortical areas (areas 17, 18, 19, 20 and the posteromedial lateral suprasylvian visual area, PMLS). Cases with injections restricted to individual visual areas indicate that they all contribute to the parafloccular input. Considerably less overlap occurred after injections of the primary sensorimotor region (SI, MI) and second somatosensory area (SII), while the supplementary motor area, the auditory cortex and gyrus cinguli probably have no or very restricted access to the dorsal paraflocculus. It is concluded that the dorsal paraflocculus has its major cortical input from the parietal association cortex and the visual cortical areas. Since all the various cortical regions studied project to largely different parts of the pontine nuclei, and overlap with neurons projecting to the dorsal paraflocculus takes place at numerous places, it follows that the pontine neurons projecting to the dorsal paraflocculus must consist of many subgroups differing with regard to their cortical input.

摘要

为了揭示大脑皮层各部分经脑桥核与背侧副绒球之间联系的组织结构和相对强度,在17只猫的背侧副绒球内注射WGA-HRP,并在大脑皮层各部分注射相同的示踪剂。在连续的横切面上仔细描绘了皮质纤维的终末区域(顺行标记)和投射到背侧副绒球的脑桥神经元(逆行标记)。作为对10只猫计数的平均值,90%的标记细胞位于注射对侧的脑桥核内,且大多数(70%)位于核的前半部分。在注射顶叶联合皮层(5区和7区)后,顺行和逆行标记之间的重叠程度最高。在一项双顺行追踪实验中,结果表明5区和7区对背侧副绒球的大脑输入都有很大贡献。在注射几个视觉皮层区域(17区、18区、19区、20区和后内侧外侧上薛氏视觉区,PMLS)后也出现了高度重叠。仅限于单个视觉区域注射的病例表明,它们都对副绒球输入有贡献。在注射初级感觉运动区(SI、MI)和第二躯体感觉区(SII)后,重叠程度明显较低,而补充运动区、听觉皮层和扣带回可能无法或仅有非常有限的通路连接到背侧副绒球。结论是,背侧副绒球的主要皮层输入来自顶叶联合皮层和视觉皮层区域。由于所研究的所有不同皮层区域都投射到脑桥核的大致不同部分,并且与投射到背侧副绒球的神经元在许多地方发生重叠,因此可以推断,投射到背侧副绒球的脑桥神经元必定由许多在皮层输入方面存在差异的亚组组成。

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