首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >BLOCKADE OF ACTION POTENTIAL ACTIVITY ALTERS INITIAL ARBORIZATION OF THALAMIC AXONS WITHIN CORTICAL LAYER 4
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BLOCKADE OF ACTION POTENTIAL ACTIVITY ALTERS INITIAL ARBORIZATION OF THALAMIC AXONS WITHIN CORTICAL LAYER 4

机译:丘脑层中丘脑轴突的动作电位活动阻滞性初始树状化

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In the formation of connections during the development of the nervous system, it is generally accepted that there is an early phase not requiring neural activity and a later activity-dependent phase. The initial processes of axonal pathfinding and target selection are not thought to require neural activity, whereas the later fine-tuning of connections into their final adult patterns does. We report an apparent exception to this rule in which action potential activity seems to be required very early in development for thalamic axons to form appropriate patterns of terminal arborizations with their ultimate target neurons in layer 4 of the cerebral cortex. Blockade of sodium action potentials during the 2-week fetal period when visual thalamic axons initially grow into the primary visual cortex in cats prevents the normally occurring branching of lateral geniculate nucleus axons within layer 4. This observation implies a role for action-potential activity in cerebral cortical development far earlier than previously suspected, weeks before eye-opening and the onset of the well-known process of activity-dependent reorganization of axonal terminal arbors that leads to the formation of ocular dominance columns. [References: 31]
机译:在神经系统发育过程中形成连接时,通常认为存在不需要神经活动的早期阶段和依赖活动的后期阶段。轴突寻路和目标选择的初始过程不认为需要神经活动,而后来将连接微调成最终的成人模式则需要神经活动。我们报告该规则的一个明显例外,在该规则中,丘脑轴突似乎很早就需要动作电位活动,以形成其最终靶神经元位于大脑皮质第4层的末端乔木的适当模式。当视觉丘脑轴突最初生长到猫的主要视觉皮层的2周胎儿期中,钠动作电位的阻滞阻止了在第4层内正常发生的外侧膝状核轴突分支。该观察结果暗示了动作电位活动的作用大脑皮层的发育要比先前怀疑的要早得多,而且要睁开眼睛并在众所周知的轴突末梢活动依赖活性的重组过程开始之前进行,从而导致形成眼优势柱。 [参考:31]

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