首页> 美国卫生研究院文献>The Journal of Neuroscience >Calbindin and parvalbumin cells in monkey VPL thalamic nucleus: distribution laminar cortical projections and relations to spinothalamic terminations
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Calbindin and parvalbumin cells in monkey VPL thalamic nucleus: distribution laminar cortical projections and relations to spinothalamic terminations

机译:猴子VPL丘脑核中的钙结合蛋白和小白蛋白细胞:分布层状皮层投影以及与棘丘脑末端的关系

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摘要

The ventral posterior lateral nucleus (VPL) of the monkey thalamus was investigated by histochemical staining for cytochrome oxidase (CO) activity and by immunocytochemical staining for the calcium-binding proteins parvalbumin and 28 kDa calbindin. Anterograde and retrograde tracing experiments were used to correlate patterns of differential distribution of CO activity and of parvalbumin and calbindin cells with the terminations of spinothalamic tract fibers and with the types of cells projecting differentially to superficial and deeper layers of primary somatosensory cortex (SI). VPL is composed of CO-rich and CO- weak compartments. Cells are generally smaller in the CO-weak compartment. Parvalbumin-immunoreactive cells and parvalbumin- immunoreactive medial lemniscal fiber terminations are confined to the CO-rich compartment. Calbindin-immunoreactive cells are found in both the CO-rich and CO-weak compartments. The CO-weak compartment, containing only calbindin cells, forms isolated zones throughout VPL and expands as a cap covering the posterior surface of the ventral posterior medial nucleus (VPM). Spinothalamic tract terminations tend to be concentrated in the CO-weak compartment, especially in the posterior cap. Other CO-weak, parvalbumin-negative, calbindin-positive nuclei, including the posterior, ventral posterior inferior, and anterior pulvinar and the small-celled matrix of VPM are also associated with concentrations of spinothalamic and caudal trigeminothalamic terminations. Parvalbumin cells are consistently larger than calbindin cells and are retrogradely labeled only after injections of tracers in middle and deep layers of SI. The smaller calbindin cells are the only cells retrogradely labeled after placement of retrograde tracers that primarily involve layer I of SI. The compartmental organization of VPL is similar to but less rigid than that previously reported in VPM. VPL and VPM relay cells projecting to different layers of SI cortex can be distinguished by differential immunoreactivity for the two calcium-binding proteins. The small- celled, CO-weak, calbindin-positive zones of VPL and VPM appear to form part of a wider system of smaller thalamic neurons unconstrained by traditional nuclear boundaries that are preferentially the targets of spinothalamic and caudal trigeminal inputs, and that may have preferential access to layer I of SI.
机译:通过组织化学染色检测细胞色素氧化酶(CO)活性,并通过免疫细胞化学染色检测钙结合蛋白小白蛋白和28 kDa钙结合蛋白,研究了猴丘脑的腹侧后外侧核(VPL)。顺行和逆行追踪实验用于将CO活性以及小白蛋白和钙结合蛋白细胞的差异性分布模式与脊髓丘脑束纤维的末端以及细胞类型差异投射到初级体感皮层(SI)的表层和深层相关。 VPL由富含CO和不含CO的部分组成。 CO弱隔室中的细胞通常较小。小白蛋白免疫反应性细胞和小白蛋白免疫反应性内侧次生纤维末端封闭在富含CO的区室中。在富含CO和缺乏CO的区室中都发现了钙结合蛋白免疫反应性细胞。仅包含钙结合蛋白细胞的CO弱区室在整个VPL中形成孤立的区域,并扩展为覆盖腹侧后内侧核(VPM)后表面的帽。脊髓丘脑束末端倾向于集中在弱CO隔室中,尤其是在后盖中。其他CO弱,小白蛋白阴性,钙结合蛋白阳性的细胞核,包括后,腹后,下前,前肺和VPM的小细胞基质,也与脊髓丘脑和尾部三叉丘脑末端的浓度有关。小白蛋白细胞始终大于钙结合蛋白细胞,仅在SI的中层和深层注射示踪剂后才进行逆行标记。较小的钙结合蛋白细胞是放置主要涉及SI的I层的逆行示踪剂后唯一被逆行标记的细胞。 VPL的分隔组织与VPM先前报道的相似,但刚性较差。可以通过两种钙结合蛋白的免疫反应性不同来区分投射到SI皮质不同层的VPL和VPM中继细胞。 VPL和VPM的小细胞,CO弱,钙结合蛋白阳性区域似乎形成了较小丘脑神经元系统的一部分,这些丘脑神经元不受传统核边界的约束,传统核边界优先是棘丘脑和尾端三叉神经输入的目标,并且可能具有优先进入SI的第一层。

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