Faculty of Health Sciences, School of Anatomical Sciences, University of the Witwatersrand, 7 York Road, Parktown, Johannesburg, 2193, South Africa.
Faculty of Psychology, Institute of Cognitive Neuroscience, Biopsychology, Ruhr-University Bochum, Universitätsstraße 150, 44780, Bochum, Germany.
Brain Struct Funct. 2020 Mar;225(2):683-703. doi: 10.1007/s00429-020-02028-3. Epub 2020 Feb 3.
The phylogenetic position of crocodilians in relation to birds and mammals makes them an interesting animal model for investigating the evolution of the nervous system in amniote vertebrates. A few neuroanatomical atlases are available for reptiles, but with a growing interest in these animals within the comparative neurosciences, a need for these anatomical reference templates is becoming apparent. With the advent of MRI being used more frequently in comparative neuroscience, the aim of this study was to create a three-dimensional MRI-based atlas of the Nile crocodile (Crocodylus niloticus) brain to provide a common reference template for the interpretation of the crocodilian, and more broadly reptilian, brain. Ex vivo MRI acquisitions in combination with histological data were used to delineate crocodilian brain areas at telencephalic, diencephalic, mesencephalic, and rhombencephalic levels. A total of 50 anatomical structures were successfully identified and outlined to create a 3-D model of the Nile crocodile brain. The majority of structures were more readily discerned within the forebrain of the crocodile with the methods used to produce this atlas. The anatomy outlined herein corresponds with both classical and recent crocodilian anatomical analyses, barring a few areas of contention predominantly related to a lack of functional data and conflicting nomenclature.
鳄鱼在进化上与鸟类和哺乳动物的亲缘关系,使它们成为研究羊膜动物神经系统进化的有趣动物模型。已经有一些关于爬行动物的神经解剖学图谱,但随着比较神经科学领域对这些动物的兴趣日益浓厚,对这些解剖学参考模板的需求也变得明显起来。随着磁共振成像(MRI)在比较神经科学中越来越频繁地应用,本研究旨在创建一个基于 Nile 鳄(Crocodylus niloticus)大脑的三维 MRI 图谱,为鳄类甚至更广泛的爬行动物的大脑提供一个共同的参考模板。利用离体 MRI 采集与组织学数据相结合的方法,对大脑的端脑、间脑、中脑和后脑水平进行了脑区划分。共成功识别和勾勒出 50 个解剖结构,创建了 Nile 鳄大脑的三维模型。在制作该图谱时使用的方法,使得鳄类大脑的前脑区域的大多数结构更容易分辨。本文概述的解剖结构与经典和现代鳄类的解剖分析相对应,只有少数有争议的区域主要与缺乏功能数据和命名冲突有关。