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比较猕猴腹后外侧核(VPLc)和内侧丘脑枕中的丘脑皮质及皮质丘脑微结构和空间互易性。

Comparing thalamocortical and corticothalamic microstructure and spatial reciprocity in the macaque ventral posterolateral nucleus (VPLc) and medial pulvinar.

作者信息

Darian-Smith C, Tan A, Edwards S

机构信息

Department of Anatomy and Cell Biology, University of Melbourne, Parkville, Victoria, Australia.

出版信息

J Comp Neurol. 1999 Jul 26;410(2):211-34.

PMID:10414528
Abstract

The detailed morphology of thalamocortical (TC) and corticothalamic (CT) pathways connecting the ventral posterolateral nucleus (VPLc) with the primary somatosensory cortex (areas 3b and 1) and the thalamic pulvinar with the posterior parietal cortex (primarily area 7a), was compared. Each pathway processes information relevant to directed reaching tasks, but whereas VPLc receives its major input from the spinal cord and external environment, the primary afferent to the pulvinar is cortical. Using combined tracer and thick fixed slice procedures, the soma/dendritic morphology of TC neuron populations (with known destination) was shown to be quantitatively similar within VPLc and the pulvinar. This implies that differences in information processing in VPLc (a primary relay) and the pulvinar (an integrative thalamic nucleus) are not defined by a distinctive TC morphology, but rather by the connections of these neuron populations. Two morphologically distinct types of CT axon were observed within the medial pulvinar and VPLc. The more common "Type E" were fine, had boutons en passant and diffuse terminal bifurcations ending in masses of tiny boutons. "Type R" axons were thicker, smooth, and terminated in localised clusters of large terminal boutons. Each type had a unique pattern of termination reflecting a distinct action on target neuron populations. The spatial relationship between TC distribution territories and CT terminal fields was examined within the medial pulvinar and VPLc by using anterograde and retrograde tracers injected together within cortical areas 7a, and 3b/1, respectively. Spatial overlap was incomplete within both thalamic nuclei. Our findings show a more complex relationship between TC and CT neuron populations than previously demonstrated.

摘要

对连接腹后外侧核(VPLc)与初级体感皮层(3b区和1区)的丘脑皮质(TC)和皮质丘脑(CT)通路,以及连接丘脑枕与顶叶后皮质(主要是7a区)的详细形态进行了比较。每条通路都处理与定向伸手任务相关的信息,但VPLc主要从脊髓和外部环境接收输入,而丘脑枕的主要传入是皮质。使用联合示踪剂和厚固定切片程序,结果显示VPLc和丘脑枕内(已知目的地的)TC神经元群体的胞体/树突形态在数量上相似。这意味着VPLc(一个主要中继站)和丘脑枕(一个丘脑整合核)在信息处理上的差异不是由独特的TC形态决定的,而是由这些神经元群体的连接决定的。在内侧丘脑枕和VPLc内观察到两种形态不同的CT轴突类型。较常见的“E型”较细,有旁枝终扣和弥散的终末分支,末端是大量微小终扣。“R型”轴突较粗,表面光滑,终末于局部大终扣簇。每种类型都有独特的终末模式,反映了对靶神经元群体的不同作用。通过分别在7a区和3b/1区皮质内一起注射顺行和逆行示踪剂,研究了内侧丘脑枕和VPLc内TC分布区域与CT终末场之间的空间关系。两个丘脑核内的空间重叠都不完全。我们的研究结果表明,TC和CT神经元群体之间的关系比以前所证明的更为复杂。

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