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Reticular Theory of Camillo Golgi and Restructuring Electrical Synapses in Syncytial Perforations

机译:混沌高尔基的网状理论和合成穿孔的重组电气突触

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摘要

Experimental data published earlier confirming the representations of the reticular theory of the organization of the nervous system are analyzed. It is noted that Sherrington's evidence has refuted the main concept of the neuronal theory of Ramon y Cajal, the law of dynamic polarization of neurons. After the detection of gap junctions (GJs), the adhesion of neurites, their high electrical and metabolic permeability, and their cumulative interaction were detected. Data demonstrating that GJs are able to transform into syncytial perforations are given, and somatic GJs, under favorable conditions, can convert neurons into dikaryons. It is assumed that all the phenomena described are consecutive stages of a single process of reconstruction of the outer cell membrane of the neuron.
机译:分析了先前公布的实验数据,确认了神经系统组织的网状理论的表示。值得注意的是,Sherrington的证据驳斥了RAMON Y CAJAL神经元理论的主要概念,神经元的动态极化定律。在检测到间隙结(GJS)后,检测到神经抗体的粘附性,其高电和代谢渗透性及其累积相互作用。证明GJ能够在合适的条件下给出GJS能够转化为合胞穿孔的数据可以将神经元转化为Dikaryons。假设描述的所有现象是单一过程的连续阶段重建神经元的外部细胞膜。

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  • 来源
    《Biology Bulletin》 |2019年第2期|128-143|共16页
  • 作者

    Sotnikov O. S.;

  • 作者单位

    Russian Acad Sci Pavlov Inst Physiol St Petersburg 199034 Russia;

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  • 正文语种 eng
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