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首页> 外文期刊>Frontiers in Cellular Neuroscience >Developmental Profile of Ion Channel Specializations in the Avian Nucleus Magnocellularis
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Developmental Profile of Ion Channel Specializations in the Avian Nucleus Magnocellularis

机译:禽核大细胞离子通道专业化的发展概况。

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Ultrafast and temporally precise action potentials (APs) are biophysical specializations of auditory brainstem neurons; properties necessary for encoding sound localization and communication cues. Fundamental to these specializations are voltage dependent potassium (K_(V)) and sodium (Na_(V)) ion channels. Here, we characterized the functional development of these ion channels and quantified how they shape AP properties in the avian cochlear nucleus magnocellularis (NM). We report that late developing NM neurons (embryonic [E] days 19–21) generate fast APs that reliably phase lock to sinusoidal inputs at 75 Hz. In contrast, early developing neurons (
机译:超快速和暂时精确的动作电位(APs)是听觉脑干神经元的生物物理专业知识;编码声音本地化和交流提示所需的属性。这些专业化的基础是电压依赖性钾(K_(V))和钠(Na_(V))离子通道。在这里,我们表征了这些离子通道的功能发展,并量化了它们如何塑造禽耳蜗巨细胞核(NM)中的AP特性。我们报告说,后期发展的NM神经元(胚胎[E]天19-21天)生成快速AP,该AP可靠地锁相到75 Hz的正弦输入。相反,早期发育的神经元(

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