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The Anatomical Boundary of the Rat Claustrum

机译:老鼠猫王子的解剖学边界

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摘要

The claustrum is a subcortical nucleus that exhibits dense connectivity across the neocortex. Considerable recent progress has been made in establishing its genetic and anatomical characteristics, however, a core, contentious issue that regularly presents in the literature pertains to the rostral extent of its anatomical boundary. The present study addresses this issue in the rat brain. Using a combination of immunohistochemistry and neuroanatomical tract tracing, we have examined the expression profiles of several genes that have previously been identified as exhibiting a differential expression profile in the claustrum relative to the surrounding cortex. The expression profiles of parvalbumin (PV), crystallin mu (Crym), and guanine nucleotide binding protein (G protein), gamma 2 (Gng2) were assessed immunohistochemically alongside, or in combination with cortical anterograde, or retrograde tracer injections. Retrograde tracer injections into various thalamic nuclei were used to further establish the rostral border of the claustrum. Expression of all three markers delineated a nuclear boundary that extended considerably (∼500 μm) beyond the anterior horn of the neostriatum. Cortical retrograde and anterograde tracer injections, respectively, revealed distributions of cortically-projecting claustral neurons and cortical efferent inputs to the claustrum that overlapped with the gene marker-derived claustrum boundary. Finally, retrograde tracer injections into the thalamus revealed insular cortico-thalamic projections encapsulating a claustral area with strongly diminished cell label, that extended rostral to the striatum.
机译:的屏状核是皮质下核跨过新皮层展品密连接。最近的一些进展已经建立了遗传和解剖特点而提出的,但是,一个核心的,有争议的问题,在文献中涉及其解剖边界的喙程度定期礼物。本研究解决了大鼠脑这个问题。使用免疫组织化学和神经解剖学道跟踪的组合,我们已经研究先前已确定为相对于周围皮质屏状中表现出差异表达谱的若干基因的表达谱。小白蛋白的表达谱(PV),晶体亩(Crym),和鸟嘌呤核苷酸结合蛋白(G蛋白),伽玛2(Gng2)进行了评估免疫组织化学的旁边,或与皮质顺行,或逆行示踪剂注射组合。逆行示踪剂注射成各种丘脑核被用来进一步确立屏状的喙边界。所有这三个标志物的表达是划定大大延长(约500微米)超越纹状体的前角核边界。皮质逆行并顺向示踪剂注射,分别揭示的皮质突出claustral神经元和皮质传出输入到重叠在基因标记衍生屏状边界的屏状分布。最后,逆行示踪剂注射到丘脑透露岛皮质丘脑预测封装与强烈减少细胞标记的claustral区域,即扩展喙纹状体。

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