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A cytoarchitectonic study of the brain of a perciform species, the sea bass (Dicentrarchus labrax): The midbrain and hindbrain

机译:对鲈形鲈(Dicentrarchus labrax)的大脑进行细胞结构研究:中脑和后脑

摘要

This study is the third part of a comprehensive series of publications on the cytoarchitectonic organization of the brain of the European sea bass, Dicentrarchus labrax. This study provides an atlas of the brain stem based on Nissl-stained transverse sections as well as a description of cell masses and a discussion on comparative aspects of brain stem nuclei, including methodological studies in other species. By external examination, the sea bass exhibits a prominent Optic tectum and Corpus cerebelli as expected in a predator species with a highly developed visual system. However, no hypertrophy of the facial and vagal lobes was observed as reported in other non-perciform teleosts. The general organization pattern of the mesencephalon and rhombencephalon of the sea bass brain resembles that reported for other perciform teleosts. However, the Valvula cerebelli has been subdivided into anterior, central and posterior parts. In addition, the ventricular surface of the granular layer of the Valvula cerebelli appears to be in contact with those of the Torus longitudinalis. This cell apposition could be interpreted as a direct connection, but more studies demonstrating the absence of ependyma between both structures are needed. Furthermore, we have tentatively described the electro/mechano receptive pre-eminential nucleus in the rhombencephalon of the sea bass. This study completes one of the few descriptions, as well as the most complete and detailed available, of the brain of any marine perciform species. © 2008 Elsevier GmbH. All rights reserved.
机译:这项研究是有关欧洲鲈鱼Dicentrarchus labrax大脑的细胞构造组织的一系列全面出版物的第三部分。这项研究提供了基于Nissl染色的横截面的脑干图集,并描述了细胞团块,并对脑干核的比较方面进行了讨论,包括其他物种的方法学研究。通过外部检查,海鲈表现出突出的光学构造和科珀斯小脑(Corpus cerebelli),这在捕食物种中具有高度发达的视觉系统。但是,没有观察到面部和迷走神经叶肥大,正如其他非pericform硬骨鱼中报道的那样。鲈鱼脑的中脑和横脑的一般组织模式类似于其他齿形硬骨鱼的报道。但是,小脑valvula被细分为前,中和后部。另外,小叶Valvula cerebelli的颗粒层的心室表面似乎与圆环面的接触。这种细胞的并置可以解释为直接的联系,但是还需要更多的研究来证明这两种结构之间均不存在室间隔。此外,我们已经初步描述了鲈鱼的菱形脑中的电/机械感受神经突触前核。这项研究完成了对任何海洋鲈鱼物种的大脑的少数描述之一,也是最完整和详细的描述。 ©2008 Elsevier GmbH。版权所有。

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