首页> 外文期刊>The anatomical record: advances in integrative anatomy and evolutionary biology >A Comparison of the Cortical Structure of the Bowhead Whale ( Balaena mysticetus Balaena mysticetus Balaena mysticetus ), a Basal Mysticete, with Other Cetaceans
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A Comparison of the Cortical Structure of the Bowhead Whale ( Balaena mysticetus Balaena mysticetus Balaena mysticetus ), a Basal Mysticete, with Other Cetaceans

机译:鲍马鲸皮质结构的比较(Balaena mysticetus balaena mysticetus balaena mysticetus),一个基础神秘地带,其他鲸类

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ABSTRACT Few studies exist of the bowhead whale brain and virtually nothing is known about its cortical cytoarchitecture or how it compares to other cetaceans. Bowhead whales are one of the least encephalized cetaceans and occupy a basal phylogenetic position among mysticetes. Therefore, the bowhead whale is an important specimen for understanding the evolutionary specializations of cetacean brains. Here, we present an overview of the structure and cytoarchitecture of the bowhead whale cerebral cortex gleaned from Nissl‐stained sections and magnetic resonance imaging (MRI) in comparison with other mysticetes and odontocetes. In general, the cytoarchitecture of cetacean cortex is consistent in displaying a thin cortex, a thick, prominent layer I, and absence of a granular layer IV. Cell density, composition, and width of layers III, V, and VI vary among cortical regions, and cetacean cortex is cell‐sparse relative to that of terrestrial mammals. Notably, all regions of the bowhead cortex possess high numbers of von Economo neurons and fork neurons, with the highest numbers observed at the apex of gyri. The bowhead whale is also distinctive in having a significantly reduced hippocampus that occupies a space below the corpus callosum within the lateral ventricle. Consistent with other balaenids, bowhead whales possess what appears to be a blunted temporal lobe, which is in contrast to the expansive temporal lobes that characterize most odontocetes. The present report demonstrates that many morphological and cytoarchitectural characteristics are conserved among cetaceans, while other features, such as a reduced temporal lobe, may characterize balaenids among mysticetes. Anat Rec, 2018. ? 2018 Wiley Periodicals, Inc. Anat Rec, 302:745–760, 2019. ? 2018 Wiley Periodicals, Inc.
机译:摘要存在鲍马鲸脑的少数研究,几乎没有任何内容是关于其皮质细胞建筑或其如何与其他鲸类的方式知之甚少。 Bowhead鲸是最少的脑膜化的鲸类,并且占据神秘物中的基础系统发育位置之一。因此,鲍贝鲸是一种理解依锡脑大脑进化专业的重要标本。在这里,我们概述了与其他mysticetes和Odontocetes相比,从NISSL染色的部分和磁共振成像(MRI)的弓头鲸脑皮层的结构和细胞建筑。通常,依锡皮质的细胞建筑在显示薄的皮质,厚度突出的层I以及不存在粒状层IV时一致。在皮质区域中,层III,V和VI的细胞密度,组合物和宽度变化,并且缩短相对于陆地哺乳动物的细胞稀疏。值得注意的是,鲍马皮波纹的所有区域都具有大量的von MevoroMo神经元和叉神经元,并且在吉尔的顶点观察到最多的数量。弓头鲸也具有显着减少的海马,其具有显着减少的海马,其占据侧脑室内的胼callosum下方的空间。与其他Balaenids一致,弓头鲸具有似乎是钝的颞叶,这与表征大多数成分传染性的膨胀时间裂片形成鲜明对比。本报告表明,鲸类之间的许多形态和细胞建筑特征在于鲸类,而其他特征(例如还原的颞叶)可以在Mysticetes中表征Balaenids。 ANAT REC,2018.? 2018 Wiley期刊,Inc。Anat Rec,302:745-760,2019。 2018年Wiley期刊,Inc。

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