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大鼠颗粒状后隔核的小规模模块:大脑皮层类柱状结构的一个范例。

Small-scale module of the rat granular retrosplenial cortex: an example of the minicolumn-like structure of the cerebral cortex.

机构信息

Department of Ultrastructural Research, National Institute of Neuroscience, National Center of Neurology and Psychiatry Kodaira, Tokyo, Japan.

出版信息

Front Neuroanat. 2012 Jan 10;5:69. doi: 10.3389/fnana.2011.00069. eCollection 2012.

Abstract

Structures associated with the small-scale module called "minicolumn" can be observed frequently in the cerebral cortex. However, the description of functional characteristics remains obscure. A significant confounding factor is the marked variability both in the definition of a minicolumn and in the diagnostic markers for identifying a minicolumn (see for review, Jones, 2000; DeFelipe et al., 2002; Rockland and Ichinohe, 2004). Within a minicolumn, cell columns are easily visualized by conventional Nissl staining. Dendritic bundles were first discovered with Golgi methods, but are more easily seen with microtubule-associated protein 2 immunohistochemistry. Myelinated axon bundles can be seen by Tau immunohistochemistry or myelin staining. Axon bundles of double bouquet cell can be seen by calbindin immunohistochemistry. The spatial interrelationship among these morphological elements is more complex than expected and is neither clear nor unanimously agreed upon. In this review, I would like to focus first on the minicolumnar structure found in layers 1 and 2 of the rat granular retrosplenial cortex. This modular structure was first discovered as a combination of prominent apical dendritic bundles from layer 2 pyramidal neurons and spatially matched thalamocortical patchy inputs (Wyss et al., 1990). Further examination showed more intricate components of this modular structure, which will be reviewed in this paper. Second, the postnatal development of this structure and potential molecular players for its formation will be reviewed. Thirdly, I will discuss how this modular organization is transformed in mutant rodents with a disorganized layer structure in the cerebral cortex (i.e., reeler mouse and shaking rat Kawasaki). Lastly, the potential significance of this type of module will be discussed.

摘要

在大脑皮层中经常可以观察到与称为“小柱”的小规模模块相关的结构。然而,其功能特征的描述仍然不清楚。一个重要的混杂因素是,小柱的定义以及用于识别小柱的诊断标志物存在明显的可变性(参见 Jones,2000;DeFelipe 等人,2002;Rockland 和 Ichinohe,2004 的综述)。在小柱内,通过常规的尼氏染色很容易观察到细胞柱。树突束最初是用高尔基方法发现的,但用微管相关蛋白 2 免疫组织化学更容易看到。髓鞘轴突束可以通过 Tau 免疫组织化学或髓鞘染色看到。双花束细胞的轴突束可以通过 calbindin 免疫组织化学看到。这些形态学元素之间的空间相互关系比预期的更复杂,并且不清楚也没有达成一致。在这篇综述中,我想首先关注在大鼠颗粒后 retrosplenial 皮质的 1 层和 2 层中发现的小柱结构。这种模块化结构最初是作为来自 2 层锥体神经元的突出的顶树突束和空间匹配的丘脑皮质斑片状输入的组合发现的(Wyss 等人,1990)。进一步的检查显示了这种模块化结构更复杂的组成部分,本文将对此进行综述。其次,将回顾该结构的出生后发育以及其形成的潜在分子参与者。第三,我将讨论在大脑皮层层结构紊乱的突变鼠(即 reeler 小鼠和 shaking 大鼠 Kawasaki)中,这种模块化组织如何发生转变。最后,将讨论这种模块类型的潜在意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edb5/3254062/fa3e2da91cc8/fnana-05-00069-g001.jpg

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