Suppr超能文献

滨鸟越冬期海马结构的可塑性:黄斑鸻小白蛋白神经元的体视学分析

Plasticity in the hippocampal formation of shorebirds during the wintering period: Stereological analysis of parvalbumin neurons in Actitis macularius.

作者信息

Guerreiro Luma Cristina Ferreira, Henrique Ediely Pereira, da Silva Rosa João Batista, Pereira Patrick Douglas Corrêa, de Abreu Cintya Castro, Fernandes Taiany Nogueira, de Morais Magalhães Nara Gyzely, de Jesus Falcão da Silva Anderson, da Costa Emanuel Ramos, Guerreiro-Diniz Cristovam, Diniz Cristovam Wanderley Picanço, Diniz Daniel Guerreiro

机构信息

Universidade Federal do Pará, Instituto de Ciências Biológicas, Hospital Universitário João de Barros Barreto, Laboratório de Investigações em Neurodegeneração e Infecção, Rua dos Mundurucus 4487, Guamá, CEP: 66.073-005, Belém, Pará, Brasil.

Instituto Federal de Educação, Ciência e Tecnologia do Pará, Laboratório de Biologia Molecular e Neuroecologia, Rua da Escola Agrícola S/N, Vila Sinhá, CEP: 68.600-000, Bragança, Pará, Brasil.

出版信息

Learn Behav. 2022 Mar;50(1):45-54. doi: 10.3758/s13420-021-00473-6. Epub 2021 Jul 9.

Abstract

The number of parvalbumin neurons can be modified by social, multisensory, and cognitive stimuli in both mammals and birds, but nothing is known about their plasticity in long-distance migratory shorebirds. Here, in the spotted sandpiper (Actitis macularius), we investigated the plasticity of parvalbumin neurons of two brain areas during this species' wintering period at a lower latitude. We compared individuals in a nonmigratory rest period (November-January) and premigration (May-July) period. We used parvalbumin as a marker for counting a subpopulation of inhibitory neurons in the hippocampal formation (HF), with the magnocellular nucleus of the tectal isthmus (IMC) as a control area. Because the HF is involved in learning and memory and social interaction and the IMC is essential for control of head, neck, and eye movements, we hypothesized that parvalbumin neurons would increase in the HF and remain unchanged in the IMC. We used an optical fractionator to estimate cell numbers. Compared with the nonmigratory rest birds, parvalbumin neuron count estimates in the premigration birds increased significantly in the HF but remained unchanged in IMC. We suggest that the greater number of parvalbuminergic neurons in the HF of A. macularius in the premigration period represents adaptive circuitry changes involved in the migration back to reproductive niches in the northern hemisphere.

摘要

在哺乳动物和鸟类中,小白蛋白神经元的数量可通过社交、多感官和认知刺激进行调节,但对于长距离迁徙滨鸟中它们的可塑性却一无所知。在此,我们以斑胸滨鹬(Actitis macularius)为研究对象,调查了该物种在低纬度越冬期间两个脑区中小白蛋白神经元的可塑性。我们比较了处于非迁徙休息期(11月至1月)和迁徙前期(5月至7月)的个体。我们使用小白蛋白作为标记物来计数海马结构(HF)中抑制性神经元的一个亚群,并以峡核巨细胞(IMC)作为对照区域。由于海马结构参与学习、记忆和社交互动,而峡核巨细胞对于头部、颈部和眼球运动的控制至关重要,因此我们推测海马结构中的小白蛋白神经元数量会增加,而峡核巨细胞中的数量保持不变。我们使用光学分割器来估计细胞数量。与非迁徙休息期的鸟类相比,迁徙前期鸟类海马结构中的小白蛋白神经元计数估计值显著增加,而峡核巨细胞中的则保持不变。我们认为,迁徙前期斑胸滨鹬海马结构中较多的小白蛋白能神经元代表了与返回北半球繁殖地相关的适应性神经回路变化。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验