[The structural characteristics of the auditory portion of the cerebral cortex in the Baikal seal (Pusa sibirica) and the neuronal reaction to hypoxia].

V D Zharskaia, E L Luk'ianova
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Abstract

Methods of light (Nissl, Golgi-Kopsch) and electron microscopy were used for studying the structural organization of the auditory portion of the cerebral cortex of Pusa sibirica. The auditory port of this kind of cortex is characterized by pyramidization of all the layers (layer IV included), thick layer I, two sublayers in layer III which is typical of other semiaquatic and aquatic mammals. Synaptoarchitechtonics of this part of the neocortex may be compared with that of other aquatic, semiaquatic and terrestrial mammals. The investigation of the state of neurons of the auditory portion of the cortex of Pusa sibirica during induced 18-min hypoxia has shown that the alterations in the neurons are of functional and reversible character. The axosomatic synapses remained most intact. The alterations in the auditory portion of the neo-cortex of Pusa sibirica evidences high level of adaptive reactions to hypoxia associated with the adaptation of these mammals to diving and fixed in the evolutionary process.

[贝加尔湖海豹(Pusa sibirica)大脑皮层听觉部分的结构特征及神经元对缺氧的反应]。
采用光镜(尼索、高尔基-科普奇)和电镜等方法研究了西伯利亚猫大脑皮层听觉部分的结构组织。该皮层听觉口具有全层(包括第4层)呈锥体状,第1层较厚,第3层有2个亚层的特点,是其他半水生和水生哺乳动物的典型特征。这部分新皮层的突触结构可以与其他水生、半水生和陆生哺乳动物的突触结构进行比较。对大鼠听觉区神经元在缺氧诱导下的状态的研究表明,这种变化具有功能性和可逆性。轴体突触保持最完整。西伯利亚虎新皮层听觉部分的变化表明,这些哺乳动物在进化过程中对潜水和固定的适应与高水平的缺氧适应反应有关。
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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