旅鼠的下丘脑-下丘脑系统。四、实验动物降温对下丘脑-垂体后神经分泌系统超微结构的影响。

T V Arshavskaya, A L Polenov
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引用次数: 0

摘要

用电镜法研究了旅鼠下丘脑-垂体神经分泌系统(HHNS)对低温(+4℃)的反应。这些动物被关在有窝的笼子里,但没有轮子让它们奔跑;笼子里有轮子,但没有窝;关在没有窝和轮子的笼子里。如果动物没有被剥夺运动活动(在轮子上奔跑),或者可以躲在窝里,那么在冷刺激下,HHNS反应没有变化。在无窝和运动活动受限的情况下,低温暴露导致视上核和室旁核的神经分泌细胞进行性活化,最终导致其衰竭和变性。HHNS对冷的反应强度取决于系统的初始状态,该状态根据种群周期的阶段而变化。本研究提出了一种假设,即长爪龙对寒冷的适应可能是由于最大限度地利用了生态条件和行为反应。
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The hypothalamo-hypophysial system of the lemming Dicrostonyx torquatus Pallas. IV. Influence of experimental animal cooling on the ultrastructure of the hypothalamo-posthypophysial neurosecretory system.

The reaction of the hypothalamo-hypophysial neurosecretory system (HHNS) of lemmings to cold (+4 degrees C) was studied by the method of electron microscopy. The animals were kept in cages with nest, but with no wheel to allow running; in cages with a wheel, but with no nest; in cages with no nest and no wheel. No changes in the HHNS reaction were revealed under cold stimulation, if the animals were not deprived of motor activity (running in a wheel), or could hide in a nest. In case of no nest and restricted motor activity exposition to low temperature led to a progressive activation of neurosecretory cells of the supraoptic and paraventricular nuclei, and finally to their exhaustion and degeneration. The intensity of the HHNS reaction to cold is shown to depend on the initial state of the system which varies according to the stages of population cycle. The present study gives grounds to put forward the hypothesis that the adaptation of the Dicrostonyx torquatus Pallas to cold is made possible due to maximal utilization of ecological conditions and behavioral reactions.

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