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龟的丘脑前脚内核与哺乳动物的丘脑网状核具有连接和神经化学特征。

The turtle thalamic anterior entopeduncular nucleus shares connectional and neurochemical characteristics with the mammalian thalamic reticular nucleus.

作者信息

Kenigfest Natalia, Belekhova Margarita, Repérant Jacques, Rio Jean Paul, Ward Roger, Vesselkin Nikolai

机构信息

Muséum National d'Histoire Naturelle USM-0501, Centre National de la Recherche Scientifique UMR-5166, Bat. d'Anatomie comparée, Paris, France.

出版信息

J Chem Neuroanat. 2005 Oct;30(2-3):129-43. doi: 10.1016/j.jchemneu.2005.07.001.

Abstract

Neurochemical and key connectional characteristics of the anterior entopeduncular nucleus (Enta) of the turtle (Testudo horsfieldi) were studied by axonal tracing techniques and immunohistochemistry of parvalbumin, gamma-aminobutyric acid (GABA) and glutamic acid decarboxylase (GAD). We showed that the Enta, which is located within the dorsal peduncle of the lateral forebrain bundle (Pedd), has roughly topographically organized reciprocal connections with the dorsal thalamic visual nuclei, the nucleus rotundus (Rot) and dorsal lateral geniculate nucleus (GLd). The Enta receives projections from visual telencephalic areas, the anterior dorsal ventricular ridge and dorsolateral cortex/pallial thickening. Most Enta neurons contained GABA and parvalbumin, and some of them were retrogradely labeled when the tracer was injected into the visual dorsal thalamic nuclei. Further experiments using double immunofluorescence revealed colocalization of GAD and parvalbumin in the vast majority of Enta neurons, and many of these cells showed retrograde labeling with Fluoro-gold injected into the Rot and/or GLd. According to these data, the Enta may be considered as a structural substrate for recurrent inhibition of the visual thalamic nuclei. Based on morphological and neurochemical similarity of the turtle Enta, caiman Pedd nucleus, the superior reticular nucleus in birds, and the thalamic reticular nucleus in mammals, we suggest that these structures represent a characteristic component which is common to the thalamic organization in amniotes.

摘要

通过轴突追踪技术以及小白蛋白、γ-氨基丁酸(GABA)和谷氨酸脱羧酶(GAD)的免疫组织化学方法,对印度星龟(Testudo horsfieldi)前脑脚内核(Enta)的神经化学和关键连接特征进行了研究。我们发现,位于外侧前脑束背侧脚(Pedd)内的Enta与背侧丘脑视觉核、圆核(Rot)和背外侧膝状核(GLd)大致呈拓扑组织的相互连接。Enta接受来自视觉端脑区域、前背侧脑室嵴和背外侧皮质/皮质增厚区的投射。大多数Enta神经元含有GABA和小白蛋白,当将示踪剂注入视觉背侧丘脑核时,其中一些神经元被逆行标记。使用双重免疫荧光的进一步实验揭示了绝大多数Enta神经元中GAD和小白蛋白的共定位,并且许多这些细胞在用注入Rot和/或GLd的荧光金进行逆行标记时显示出标记。根据这些数据,Enta可被视为视觉丘脑核反复抑制的结构基础。基于印度星龟Enta、凯门鳄Pedd核、鸟类上网状核和哺乳动物丘脑网状核的形态和神经化学相似性,我们认为这些结构代表了羊膜动物丘脑组织共有的特征性成分。

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