[ISOMETRIC RETRACTION AND THE INVISIBLE PROCESSES OF NERVE CELLS].

O S Sotnikov, N Yu Vasyagina, T V Krasnova
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Abstract

Recently, a large number of physiological studies on stress and hibernation had described an unusual morphological phenomenon of the rapid disappearance and reapperance of apical dendrites of pyramidal neurons of the hippocampus, prefrontal cortex and other parts of the brain. In this article an attempt is maid to explain this phenomenon on the basis of morphological analysis of natural elastic properties of neuroplasm and structural kinetics of partially preserved processes of the living isolated neurons. The neuroplasm displacement with its bidirectional flow was identified in the processes. A new physiological phenomenon is described--the isometric retraction of nerve cell processes, during which the neuroplasm fluxes were directed to the opposite sides, leading to abrupt thinning of middle parts of the processes and to a thickening of both ends. It is suggested that the extremely attenuated processes can reach the submicroscopic sizes, becoming invisible in the light microscope. The repeated reversible "disappearance" and "appearance" of the processes was demonstrated supravitally in the culture of neurons and of C-1300 neuroblastoma cells. Reduction of the diameter of the processes to a limit of their visibility was demonstrated by the example of their natural stretching. The same effect was observed in the areas between the reversible varicosities of the processes. These areas became extremely thin, and then invisible. Becoming thinner, the processes were capable of sharp extension. A review of the available literature and our own data allow to conclude that the phenomenon of the disappearance of the apical dendrites was due to their isometric retraction, which lead to the emergence of "invisible processes".

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[神经细胞的等距收缩和看不见的过程]。
近年来,大量关于应激与冬眠的生理研究描述了海马、前额叶皮层等脑区锥体神经元顶端树突快速消失和重新出现的一种不寻常的形态学现象。本文试图从神经质自然弹性的形态学分析和活的分离神经元部分保存过程的结构动力学来解释这一现象。在这一过程中发现了具有双向流动的神经质位移。描述了一种新的生理现象——神经细胞突的等距收缩,在此过程中,神经质通量被定向到相反的两侧,导致突的中间部分变薄,两端变厚。结果表明,极弱过程可以达到亚微观尺寸,在光学显微镜下是不可见的。在神经元和C-1300神经母细胞瘤细胞的培养中,这种过程反复可逆地“消失”和“出现”。将过程的直径减小到其可见性的极限,其自然拉伸的例子证明了这一点。在过程的可逆变异之间的区域也观察到同样的效果。这些区域变得非常薄,然后就看不见了。变得更薄,这些过程能够急剧扩展。回顾现有文献和我们自己的数据,可以得出这样的结论:根尖树突消失的现象是由于它们的等距收缩,这导致了“看不见的过程”的出现。
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