[Paleoamygdala: the morphogenesis of nuclear-type, paleocortical and intermediate formations in the perial of postnatal development in rats].

Ontogenez Pub Date : 2015-01-01
A V Akhmadeev, L B Kalimullina
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Abstract

The cytoarchitectonics and expression of apoptosis (as an indicator of stabilization of formative processes) in nuclear, paleocortical, and intermediate formations of the paleoamygdala of the rat ondays 21, 24, 28, and 31 of postnatal development was studied. The results of analysis suggest that the morphogenesis of these formations is characterized by heterochrony due to the complexity of their structural organization predefined by the phylogenetic age. On day 21 of postnatal development of the rat, only the dorsomedial nucleus is well differentiated; on days 24-28, the posterior medial nucleus is well differentiated. The medial part of the posterior cortical nucleus (intermediate formation) is differentiated from the lateral part of this nucleus on day 28. The lateral part of the posterior cortical nucleus, which exhibits the characteristics of a paleocortical formation, acquires the cytoarchitectonics characteristic of an adult animal on day 31 of postnatal development. The dynamics of changes in the apoptotic index reflects the stabilization of morphogenetic processes characterized on the basis of cytoarchitectonic criteria. The results of this study and the neurogenetic data, indicating the presence of spatiotemporal gradients in the formation of the amygdaloid complex and the multiplicity of the original histogenetic domains, confirm the correctness of the previous concept (Akmaev and Kalimullina, 1993) on the substrate of this brain structure as a nuclear-paleocortical component of the brain.

[古杏仁核:大鼠出生后腹壁核型、古皮质型和中间形态的形态发生]。
研究了大鼠出生后发育第21、24、28和31天古杏仁核核、古皮质和中间结构中细胞结构和细胞凋亡的表达(作为形成过程稳定的指标)。分析结果表明,由于系统发育年龄预先确定的构造组织的复杂性,这些地层的形态发生具有异时性。在大鼠出生后发育第21天,只有背内侧核分化良好;第24-28天,后内侧核分化良好。第28天,后皮质核的内侧部分(中间形成)与外侧核区分开来。皮质后核的外侧部分表现出古皮质形成的特征,在出生后发育的第31天获得了成年动物的细胞结构特征。凋亡指数的动态变化反映了以细胞结构标准为特征的形态发生过程的稳定性。这项研究的结果和神经遗传学数据表明,杏仁核复合体的形成存在时空梯度和原始组织遗传学结构域的多样性,证实了之前关于这种大脑结构的底物作为大脑的核-古皮质成分的概念(Akmaev和Kalimullina, 1993)的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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