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首页> 外文期刊>The anatomical record: advances in integrative anatomy and evolutionary biology >Distribution of Calretinin Immunoreactivity in the Lateral Nucleus of the Bottlenose Dolphin ( Tursiops truncatus Tursiops truncatus ) Amygdala
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Distribution of Calretinin Immunoreactivity in the Lateral Nucleus of the Bottlenose Dolphin ( Tursiops truncatus Tursiops truncatus ) Amygdala

机译:瓶颈海豚(Tursiops Truncatus Tursiops Truncatus)左右核中的Calretinin免疫反应性分布Amygdala

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摘要

ABSTRACT The amgdaloid complex consists of different nuclei, each with unique cytoarchitectonic, chemoarchitectonic and connectional characteristics. Most of the inputs coming from cortical and subcortical areas enter the amygdala via the lateral nucleus, which makes it the main receiving structure of the complex. The activity of its neurons is coordinated and modulated by different inhibitory, GABAergic‐interneurons, which can be classified for their expression of various calcium‐binding proteins, as well as by morphological characteristics. This research based on the analysis of the amygdala of three bottlenose dolphins, provides the first description of the topography, cytoarchitecture and distribution of calretinin immunoreactivity of the lateral nucleus. Our observations on the bottlenose dolphin confirmed the general topography of the mammalian amygdala and of the lateral nucleus. Notably, we identified six subdivision of the nucleus, more than those reported until now in the rat, monkey and human lateral nucleus. This could reveal an outstanding capability of integration and elaboration of external stimuli. In addition, we observed a strong presence of CR‐immunoreactive (‐ir) neurons and fibres. CR‐ir neurons were mainly non‐pyramidal inhibitory neurons; in particular, 80% of IR‐cells were represented by large and small polygonal neurons. In the lateral nucleus of the human amygdala, CR‐ir neurons form inhibitory synapses on calbindin‐D28k‐IR inhibitory interneurons. Since calbindin‐D28k‐ir interneurons make inhibitory synapses on the pyramidal cells, the final goal of the CR‐ir interneurons could be the synchronization of cells activity, thus playing an important role in the control of information flow in the lateral amygdalar nucleus. Anat Rec, 2017. ? 2017 Wiley Periodicals, Inc. Anat Rec, 300:2008–2016, 2017. ? 2017 Wiley Periodicals, Inc.
机译:摘要Amgdaloid复合物由不同的细胞核组成,每个细胞核都有独特的细胞构里,化学建筑学和连接特性。来自皮质和皮质点区域的大多数输入通过横向核进入杏仁核,这使得其主要接收结构的复合物。其神经元的活性由不同的抑制性的胃肠杆菌性 - 中间核协调和调节,其可以分类为它们的各种钙结合蛋白的表达,以及通过形态特征。该研究基于分析三种瓶颈海豚的杏仁核,提供了侧向核的形貌,细胞建筑结构的第一个描述,细胞构质结构和分布的分布。我们对瓶胎海豚的观察结果证实了哺乳动物Amygdala和侧核的一般形貌。值得注意的是,我们鉴定了核细胞核的六个细胞,比现在在大鼠,猴子和人的侧核中报告的那些细胞核。这可能揭示了外部刺激的整合和制定的突出能力。此外,我们观察到Cr-ImploreActive(-Ir)神经元和纤维的强烈存在。 Cr-IR神经元主要是非金字塔抑制神经元;特别地,80%的IR细胞由大型和小多边形神经元表示。在人杏仁杆菌的外侧核中,Cr-IR神经元在Calbindin-D28K-IR抑制性核心上形成抑制突触。由于Calbindin-D28K-IR中间核心在金字塔细胞上使抑制突触,CR-IR型细胞的最终目标可能是细胞活性的同步,从而在横向孢子核中的信息流中发挥重要作用。 Anat Rec,2017.? 2017 Wiley期刊,Inc。Anat Rec,300:2008-2016,2017.? 2017年Wiley期刊,Inc。

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