Neurogenesis in the procerebrum of the snail Helix aspersa: a quantitative analysis.

Roger D Longley
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引用次数: 4

Abstract

The procerebrum, a specialized structure for olfaction in terrestrial pulmonate molluscs, contains 20,000 to 50,000 small, uniformly sized neurons that increase in number with age. Here I show the likely source of neurons added to the procerebrum of Helix aspersa and that the rate of neuron addition depends on snail weight. After hatching, during the initial exponential growth phase, H. aspersa adds neurons to the procerebral apex by mitosis and from a cerebral tube. In the logistic growth phase beginning 30-40 days post-hatch, neurons also seem to be added to the procerebrum from the peritentacular and olfactory nerves, causing the rate of neuron addition to approximately double; but as in the earlier exponential growth phase, this rate remains a function of snail weight. This neuron addition throughout the life of the snail can be predicted by snail weight. In the two growth phases, the number of neurons in the procerebrum is given by logarithmic functions of snail weight. The results here for H. aspersa provide the basis for experiments to determine the peripheral origin and destination of neuronal precursors that are added to the procerebrum and to determine how neuron addition affects the function of the procerebrum.

螺蛳脑前神经发生的定量分析。
前脑是陆生肺类软体动物的一种专门用于嗅觉的结构,含有2万到5万个大小一致的小神经元,它们的数量随着年龄的增长而增加。在这里,我展示了增加到螺旋螺前脑的神经元的可能来源,以及神经元增加的速度取决于蜗牛的体重。孵化后,在最初的指数生长阶段,血蛛通过有丝分裂和从脑管向前脑尖添加神经元。在孵化后30-40天开始的逻辑生长期,神经元似乎也从带周神经和嗅觉神经添加到前脑,使神经元增加的速度大约增加一倍;但在早期的指数增长阶段,这个速度仍然是蜗牛重量的函数。这种神经元在蜗牛一生中的增加可以通过蜗牛的体重来预测。在两个生长阶段,前脑神经元的数量由蜗牛体重的对数函数给出。本研究结果为确定添加到前脑的神经元前体的外周起源和目的地以及确定神经元添加如何影响前脑功能提供了实验基础。
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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