首页> 美国卫生研究院文献>The Journal of Neuroscience >Chemically distinct compartments of the thalamic VPM nucleus in monkeys relay principal and spinal trigeminal pathways to different layers of the somatosensory cortex
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Chemically distinct compartments of the thalamic VPM nucleus in monkeys relay principal and spinal trigeminal pathways to different layers of the somatosensory cortex

机译:猴子丘脑VPM核化学上不同的区室将主要和脊柱三叉神经通路传递至体感皮层的不同层

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摘要

The ventral posteromedial nucleus (VPM) of the monkey thalamus was investigated with combined immunocytochemical, histochemical, and connection-tracing techniques. Injections of anterogradely transported tracers were placed selectively in the caudal nucleus of the spinal trigeminal nuclear complex, and retrogradely transported horseradish peroxidase (HRP) or fluorescent dyes were placed on the surface or into the depths of defined parts of the trigeminal representation in the first somatic sensory area (SI) of the cerebral cortex. The results are correlated with those of the preceding paper (Rausell and Jones, 1991), which demonstrated the presence of 2 domains in the nucleus on the basis of different patterns of cytochrome oxidase (CO) staining and calcium-binding protein immunoreactivity. The cells of the CO-defined rod and matrix domains receive inputs from different components of the trigeminal afferent system and project to different layers of SI. The large- and medium-sized relay cells of the CO-rich rods, which are immunoreactive for parvalbumin, all project to middle layers of SI. The small relay cells of the weakly-stained CO-matrix, surrounding and intervening between the rods, are immunoreactive for 28-kDa calbindin and project to superficial layers (I and II) of SI. Anterograde tracing studies reveal that the rod domain in VPM is innervated by fibers arising in the contra- and ipsilateral principal trigeminal nucleus, while the matrix domain (and calbindin-positive domains in adjacent nuclei) are innervated by fibers arising in the caudal nucleus of the spinal trigeminal complex. These results demonstrate the modularity and parallel streaming of the functional components of the trigeminal part of the somatic sensory system and suggest that lemniscal and nonlemniscal elements of the system gain access by separate routes to different layers of the SI cortex.
机译:用免疫细胞化学,组织化学和连接追踪技术研究了猴丘脑的腹膜后核(VPM)。顺行转运示踪剂的注射被选择性地放置在脊柱三叉神经核复合体的尾核中,逆行转运的辣根过氧化物酶(HRP)或荧光染料被放置在第一个体细胞的三叉神经表示的定义部分的表面或深度内大脑皮层的感觉区域(SI)。结果与先前的论文(Rausell和Jones,1991)相关,后者根据细胞色素氧化酶(CO)染色和钙结合蛋白免疫反应性的不同模式证明了核中2个结构域的存在。 CO定义的杆域和矩阵域的单元从三叉神经传入系统的不同组件接收输入,并投射到SI的不同层。对小白蛋白有免疫反应性的富含CO的棒的大中型中继细胞都投射到SI的中间层。围绕在棒之间的弱染CO矩阵的小中继细胞对28 kDa钙结合蛋白具有免疫反应性,并投射到SI的表层(I和II)。顺行示踪研究表明,VPM的棒状结构域由对侧和同侧主三叉神经核中产生的纤维支配,而基质结构域(和相邻核中的钙结合蛋白阳性域)则由其尾侧核中的纤维支配。脊柱三叉复合体。这些结果证明了体感系统三叉神经部分功能模块的模块化和并行流传输,并表明系统的单层和非单层元素通过分别到达SI皮质不同层的路径获得访问权限。

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