首页> 外文OA文献 >Laminar and cytoarchitectonic features of the cerebral cortex in the Risso's dolphin (Grampus griseus), striped dolphin (Stenella coeruleoalba), and bottlenose dolphin (Tursiops truncatus)
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Laminar and cytoarchitectonic features of the cerebral cortex in the Risso's dolphin (Grampus griseus), striped dolphin (Stenella coeruleoalba), and bottlenose dolphin (Tursiops truncatus)

机译:里索海豚(Grampus griseus),条纹海豚(Stenella coeruleoalba)和宽吻海豚(Tursiops truncatus)大脑皮质的层流和细胞构造特征

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摘要

The present investigation carried out Nissl, Klüver-Barrera, and Golgi studies of the cerebral cortex in three distinct genera of oceanic dolphins (Risso's dolphin, striped dolphin and bottlenose dolphin) to identify and classify cortical laminar and cytoarchitectonic structures in four distinct functional areas, including primary motor (M1), primary sensory (S1), primary visual (V1), and primary auditory (A1) cortices. The laminar and cytoarchitectonic organization of each of these cortical areas was similar among the three dolphin species. M1 was visualized as five-layer structure that included the molecular layer (layer I), external granular layer (layer II), external pyramidal layer (layer III), internal pyramidal layer (layer V), and fusiform layer (layer VI). The internal granular layer was absent. The cetacean sensory-related cortical areas S1, V1, and A1 were also found to have a five-layer organization comprising layers I, II, III, V and VI. In particular, A1 was characterized by the broadest layer I, layer II and developed band of pyramidal neurons in layers III (sublayers IIIa, IIIb and IIIc) and V. The patch organization consisting of the layer IIIb-pyramidal neurons was detected in the S1 and V1, but not in A1. The laminar patterns of V1 and S1 were similar, but the cytoarchitectonic structures of the two areas were different. V1 was characterized by a broader layer II than that of S1, and also contained the specialized pyramidal and multipolar stellate neurons in layers III and V.
机译:本研究对三个不同的海豚属(Risso's海豚,条纹海豚和宽吻海豚)的大脑皮层进行了Nissl,Klüver-Barrera和Golgi研究,以识别和分类四个不同功能区域的皮质层流和细胞结构结构,包括初级运动(M1),初级感觉(S1),初级视觉(V1)和初级听觉(A1)皮质。在这三种海豚物种中,这些皮质区域的每个的层流和细胞构造组织都相似。 M1被可视化为五层结构,包括分子层(层I),外部颗粒层(层II),外部锥体层(III层),内部锥体层(V层)和梭形层(VI层)。内部颗粒层不存在。鲸类与感觉有关的皮质区域S1,V1和A1也被发现具有五层结构,包括I,II,III,V和VI层。特别是,A1的特征是I,II层最宽,III层(IIIa,IIIb和IIIc子层)和V层的锥体神经元发达。在S1中检测到由IIIb层-锥体神经元组成的膜片组织。和V1,但不在A1中。 V1和S1的层流模式相似,但是两个区域的细胞建筑结构不同。 V1的特征在于II层比S1层更宽,并且在III层和V层中还包含特殊的锥体和多极星状神经元。

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    Furutani, Rui;

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  • 年度 2008
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