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首页> 外文期刊>The Journal of Experimental Biology >Ion channels in mammalian vestibular afferents may set regularity of firing
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Ion channels in mammalian vestibular afferents may set regularity of firing

机译:哺乳动物前庭传入通道中的离子通道可设定发射规律

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Rodent vestibular afferent neurons offer several advantages as a model system for investigating the significance and origins of regularity in neuronal firing interval. Their regularity has a bimodal distribution that defines regular and irregular afferent classes. Factors likely to be involved in setting firing regularity include the morphology and physiology of the afferents' contacts with hair cells, which may influence the averaging of synaptic noise and the afferents' intrinsic electrical properties. In vitro patch clamp studies on the cell bodies of primary vestibular afferents reveal a rich diversity of ion channels, with indications of at least two neuronal populations. Here we suggest that firing patterns of isolated vestibular ganglion somata reflect intrinsic ion channel properties, which in vivo combine with hair cell synaptic drive to produce regular and irregular firing.
机译:啮齿类动物前庭传入神经元具有几个优势,可作为模型系统来研究神经元放电间隔中规律性的意义和起源。它们的规则性具有双峰分布,定义了规则和不规则的传入类。设定放电规律性可能涉及的因素包括传入者与毛细胞接触的形态和生理,这可能会影响突触噪声的平均和传入者的固有电特性。对原发前庭传入细胞体的体外膜片钳研究显示离子通道丰富多样,至少有两个神经元群体的迹象。在这里,我们建议离体的前庭神经节体细胞的发射模式反映出固有的离子通道特性,该特性在体内与毛细胞突触驱动相结合,产生规则和不规则的发射。

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