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大蝙蝠的内嗅皮层:沃氏长舌果蝠和棕果蝠的比较研究。

The entorhinal cortex of the Megachiroptera: a comparative study of Wahlberg's epauletted fruit bat and the straw-coloured fruit bat.

机构信息

Institute of Anatomy, University of Zurich, Zurich, Switzerland.

出版信息

Brain Struct Funct. 2010 May;214(4):375-93. doi: 10.1007/s00429-010-0239-z. Epub 2010 Feb 4.

Abstract

This study describes the organisation of the entorhinal cortex of the Megachiroptera, straw-coloured fruit bat and Wahlberg's epauletted fruit bat. Using Nissl and Timm stains, parvalbumin and SMI-32 immunohistochemistry, we identified five fields within the medial (MEA) and lateral (LEA) entorhinal areas. MEA fields E(CL) and E(C) are characterised by a poor differentiation between layers II and III, a distinct layer IV and broad, stratified layers V and VI. LEA fields E(I), E(R) and E(L) are distinguished by cell clusters in layer II, a clear differentiation between layers II and III, a wide columnar layer III and a broad sublayer Va. Clustering in LEA layer II was more typical of the straw-coloured fruit bat. Timm-staining was most intense in layers Ib and II across all fields and layer III of field E(R). Parvalbumin-like staining varied along a medio-lateral gradient with highest immunoreactivity in layers II and III of MEA and more lateral fields of LEA. Sparse SMI-32-like immunoreactivity was seen only in Wahlberg's epauletted fruit bat. Of the neurons in MEA layer II, ovoid stellate cells account for approximately 38%, polygonal stellate cells for approximately 8%, pyramidal cells for approximately 18%, oblique pyramidal cells for approximately 6% and other neurons of variable morphology for approximately 29%. Differences between bats and other species in cellular make-up and cytoarchitecture of layer II may relate to their three-dimensional habitat. Cytoarchitecture of layer V in conjunction with high encephalisation and structural changes in the hippocampus suggest similarities in efferent hippocampal --> entorhinal --> cortical interactions between fruit bats and primates.

摘要

这项研究描述了 Megachiroptera(棕果蝠和 Wahlberg's 垂耳果蝠)内嗅皮层的组织。使用尼氏染色和 Timm 染色、副钙蛋白和 SMI-32 免疫组织化学,我们在内嗅区的内侧(MEA)和外侧(LEA)区域内识别出五个区域。MEA 区的 E(CL)和 E(C) 特征为 II 层和 III 层之间的分化较差、明显的 IV 层和宽阔的、分层的 V 层和 VI 层。LEA 区的 E(I)、E(R)和 E(L) 则以 II 层中的细胞簇、II 层和 III 层之间的明显分化、宽阔的柱状 III 层和宽阔的 Va 亚层为特征。LEA 层 II 中的聚类在棕果蝠中更为典型。Timm 染色在所有区域的 Ib 和 II 层以及 E(R)层的 III 层最为强烈。副钙蛋白样染色沿中侧梯度变化,MEA 的 II 层和 III 层以及 LEA 更外侧的区域具有最高的免疫反应性。稀疏的 SMI-32 样免疫反应性仅见于 Wahlberg's 垂耳果蝠。MEA 层 II 中的神经元中,椭圆形星状细胞约占 38%,多角星形细胞约占 8%,锥体细胞约占 18%,斜锥体细胞约占 6%,形态各异的其他神经元约占 29%。层 II 中细胞组成和细胞构筑在蝙蝠和其他物种之间的差异可能与其三维栖息地有关。V 层的细胞构筑与高脑化和海马结构变化相结合,表明在蝙蝠和灵长类动物之间,海马传出到内嗅皮层到皮层的相互作用存在相似性。

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