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一些哺乳动物的主嗅球组织结构:麝鼩、鼹鼠、刺猬、树鼩、蝙蝠、小鼠和大鼠。

Organization of the main olfactory bulbs of some mammals: musk shrews, moles, hedgehogs, tree shrews, bats, mice, and rats.

作者信息

Kosaka Katsuko, Kosaka Toshio

机构信息

Faculty of Medicine, School of Health Sciences, Kyushu University, Fukuoka 812-8582, Japan.

出版信息

J Comp Neurol. 2004 Apr 19;472(1):1-12. doi: 10.1002/cne.20004.

Abstract

We immunohistochemically examined the organization of the main olfactory bulbs (MOBs) in seven mammalian species, including moles, hedgehogs, tree shrews, bats, and mice as well as laboratory musk shrews and rats. We focused our investigation on two points: 1) whether nidi, particular spheroidal synaptic regions subjacent to glomeruli, which we previously reported for the laboratory musk shrew MOBs, are also present in other animals and 2) whether the compartmental organization of glomeruli and two types of periglomerular cells we proposed for the rat MOBs are general in other animals. The general laminar pattern was similar among these seven species, but discrete nidi and the nidal layer were recognized only in two insectivores, namely, the mole and laboratory musk shrew. Olfactory marker protein-immunoreactive (OMP-IR) axons extended beyond the limits of the glomerular layer (GL) into the superficial region of the external plexiform layer (EPL) or the nidal layer in the laboratory musk shrew, mole, hedgehog, and tree shrew but not in bat, mouse, and rat. We observed, in nidi and the nidal layer in the mole and laboratory musk shrew MOBs, only a few OMP-IR axons. In the hedgehog, another insectivore, OMP-IR processes extending from the glomeruli were scattered and intermingled with calbindin D28k-IR cells at the border between the GL and the EPL. In the superficial region of the EPL of the tree shrew MOBs, there were a small number of tiny glomerulus-like spheroidal structures where OMP-IR axons protruding from glomeruli were intermingled with dendritic branches of surrounding calbindin D28k-IR cells. Furthermore, we recognized the compartmental organization of glomeruli and two types of periglomerular cells in the MOBs of all of the mammals we examined. These structural features are therefore considered to be common and important organizational principles of the MOBs.

摘要

我们采用免疫组织化学方法研究了七种哺乳动物主嗅球(MOBs)的组织结构,这些动物包括鼹鼠、刺猬、树鼩、蝙蝠、小鼠,以及实验用的麝鼩和大鼠。我们的研究集中在两点:1)我们之前报道过的实验用麝鼩MOBs中,位于肾小球下方的特定球状突触区域——巢状体,在其他动物中是否也存在;2)我们提出的大鼠MOBs中肾小球和两种球周细胞的分区组织在其他动物中是否普遍存在。这七个物种的总体层状模式相似,但仅在两种食虫动物,即鼹鼠和实验用麝鼩中识别出离散的巢状体和巢状层。在实验用麝鼩、鼹鼠、刺猬和树鼩中,嗅觉标记蛋白免疫反应性(OMP-IR)轴突延伸超出肾小球层(GL)的界限,进入外丛状层(EPL)的浅层区域或巢状层,但在蝙蝠、小鼠和大鼠中则没有。我们在鼹鼠和实验用麝鼩MOBs的巢状体和巢状层中仅观察到少数OMP-IR轴突。在另一种食虫动物刺猬中,从肾小球延伸出的OMP-IR突起分散分布,并在GL和EPL之间的边界处与钙结合蛋白D28k-IR细胞相互交织。在树鼩MOBs的EPL浅层区域,有少量微小的肾小球样球状结构,从肾小球突出的OMP-IR轴突与周围钙结合蛋白D28k-IR细胞的树突分支相互交织。此外,我们在所有研究的哺乳动物的MOBs中都识别出了肾小球和两种球周细胞的分区组织。因此,这些结构特征被认为是MOBs常见且重要的组织原则。

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