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首页> 外文期刊>The anatomical record: advances in integrative anatomy and evolutionary biology >A Comparative Morphometric Analysis of Three Cranial Nerves in Two Phocids: The Hooded Seal (Cystophora cristata) and the Harbor Seal (Phoca vitulina)
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A Comparative Morphometric Analysis of Three Cranial Nerves in Two Phocids: The Hooded Seal (Cystophora cristata) and the Harbor Seal (Phoca vitulina)

机译:比较两种形态的三个颅神经的形态计量学分析:带帽海豹(Cystophora cristata)和斑海豹(Phoca vitulina)

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While our knowledge about the senses of pinnipeds has increased over the last decades almost nothing is known about the organization of the neuroanatomical pathways. In a first approach to this field of research, we assessed the total number of myelinated axons of three cranial nerves (CNs) in the harbor (Phoca vitulina, Pv) and hooded seal (Cystophora cristata, Cc). Axons were counted in semithin sections of the nerves embedded in Epon and stained with toluidine blue. In both species, the highest axon number was found within the optic nerve (Pv 187,00068,000 axons, Cc 481,60061,300 axons). Generally, considering absolute axon numbers, far more axons were counted within the optic and trigmenial nerve (Pv 136,70062,500 axons, Cc 179,30066,900 axons) in hooded in comparison to harbor seals. The axon counts of the vestibulocochlear nerve are nearly identical for both species (Pv 87,10068,100 axons, Cc 86,60062,700 axons). However, when comparing cell density, the cell density is almost equal for all nerves for both species except for the optic nerve in which cell density was particularly higher than in the other nerves and higher in hooded in comparison to harbor seals. We here present the first comparative analysis of three CNs in two phocid seals. While the CNs of these closely related species share some general characteristics, pronounced differences in axon numbers/ densities are apparent. These differences seem to reflect differences in e. g. size, habitat, and/or functional significance of the innervated sensory systems. (C) 2015 Wiley Periodicals, Inc.
机译:在过去的几十年中,尽管我们对捏捏的感觉的了解有所增加,但对神经解剖通路的组织却几乎一无所知。在该研究领域的第一种方法中,我们评估了港口(Phoca vitulina,Pv)和带帽海豹(Cystophora cristata,Cc)中三个颅神经(CN)的髓鞘轴突的总数。轴突在嵌入Epon的神经的半薄切片中计数,并用甲苯胺蓝染色。在这两个物种中,视神经内的轴突数量最高(Pv 187,00068,000轴突,Cc 481,60061,300轴突)。通常,考虑到绝对轴突数量,与斑海豹相比,在带罩的视神经和三角神经中轴突的数量要多得多(Pv 136,70062,500轴突,Cc 179,30066,900轴突)。两种物种的前庭耳蜗神经的轴突计数几乎相同(Pv 87,10068,100轴突,Cc 86,60062,700轴突)。但是,在比较细胞密度时,除了视神经外,这两种物种的所有神经的细胞密度几乎都相等,其中视神经比其他海豹的细胞密度特别高,而带帽的神经密度更高。我们在这里展示了两个福克海豹中三个CN的第一个比较分析。虽然这些密切相关物种的CN具有一些一般特征,但轴突数量/密度的明显差异是显而易见的。这些差异似乎反映出e中的差异。 G。受神经支配的感觉系统的大小,栖息地和/或功能重要性。 (C)2015威利期刊公司

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