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Structure and Development of Neuronal Connections in Isogenic Organisms: Cellular Interactions in the Development of the Optic Lamina of Daphnia*

机译:同种生物中神经元连接的结构和发育:水蚤视层的发育中的细胞相互作用*

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摘要

Some details of the growth and initial cellular interactions of optic nerve axons were examined in a parthenogenetic clone of Daphnia magna. Results are summarized as follows: (i) the final structure of the optic lamina is dependent upon interactions between growing optic nerve fibers and optic lamina neuroblasts closest to the midplane of the animal, which trigger the morphological differentiation of the neuroblasts; the specificity of connections is achieved by well-defined sequences of cell migration in the ganglion; (ii) only one of the eight optic nerve axons growing back from each ommatidium in the eye possesses a structure similar to the growth cones seen on termini of nerve fibers growing in vitro; and (iii) undifferentiated neuroblasts in the ganglion react to surface contact by this “lead axon” by enveloping the axon in a glial-like relationship.
机译:在大型蚤(Daphnia magna)单性生殖克隆中检查了视神经轴突的生长和初始细胞相互作用的一些细节。结果总结如下:(i)视神经板的最终结构取决于生长的视神经纤维与最接近动物中平面的视神经板神经母细胞之间的相互作用,从而触发神经母细胞的形态分化;连接的特异性是通过神经节中明确定义的细胞迁移序列来实现的; (ii)从眼睛的每个眼孔向后生长的八个视神经轴突中,只有一个具有与体外生长的神经纤维末端上看到的生长锥相似的结构; (iii)神经节中未分化的神经母细胞通过以胶质样关系包裹轴突而对这种“铅轴突”的表面接触产生反应。

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