首页> 外文期刊>Journal of neurobiology >Growth cone form, behavior, and interactions in vivo: retinal axon pathfinding as a model.
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Growth cone form, behavior, and interactions in vivo: retinal axon pathfinding as a model.

机译:体内生长锥的形式,行为和相互作用:以视网膜轴突寻路为模型。

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Studies in vitro have revealed a great deal about growth cone behaviors, especially responses to guidance molecules, both positive and negative, and the signaling systems mediating these responses. Little, however, is known about these events as they take place in vivo. With new imaging methods, growth cone behaviors can be chronicled in the complex settings of intact or semi-intact systems. With the retinal projection through the optic chiasm as a model, we examined the hypothesis previously drawn from static material that growth cone form is position-specific: growth cone form in fact reflects specific behaviors, including rate and tempo of extension, that are more or less prominent in different locales in which growth cones are situated. Other studies show that growth cones interact with cells along the pathway, both specialized nonneuronal cells and other neurons, some expressing known guidance molecules. The present challenge is to bridge dynamic imaging with electron microscopy and molecular localization, in order to link growth cone behaviors with cell and molecular interactions in the natural setting in which growth cones extend. Copyright 2000 John Wiley & Sons, Inc.
机译:体外研究表明,大量的生长锥行为,特别是对指导分子的反应,包括阳性和阴性,以及介导这些反应的信号系统。然而,关于这些事件在体内发生的知之甚少。使用新的成像方法,可以在完整或半完整系统的复杂设置中记录生长锥的行为。以通过视交叉的视网膜投影为模型,我们检验了先前从静态材料得出的假说,即生长锥的形状是位置特定的:生长锥的形状实际上反映了特定的行为,包括速率和伸展速度,或者在生长锥所在的不同区域中不太突出。其他研究表明,生长锥与沿通路的细胞相互作用,包括专门的非神经元细胞和其他神经元,其中一些表达已知的指导分子。当前的挑战是用电子显微镜和分子定位来桥接动态成像,以便在生长锥延伸的自然环境中将生长锥行为与细胞和分子相互作用联系起来。版权所有2000 John Wiley&Sons,Inc.

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