...
首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >ELECTROPHYSIOLOGICAL PROPERTIES OF MORPHOLOGICALLY-IDENTIFIED MEDIAL VESTIBULAR NUCLEUS NEURONS PROJECTING TO THE ABDUCENS NUCLEUS IN THE CHICK EMBRYO
【24h】

ELECTROPHYSIOLOGICAL PROPERTIES OF MORPHOLOGICALLY-IDENTIFIED MEDIAL VESTIBULAR NUCLEUS NEURONS PROJECTING TO THE ABDUCENS NUCLEUS IN THE CHICK EMBRYO

机译:形态识别的内侧前庭核神经元在小鸡胚中向丘脑核投射的电生理特性

获取原文
获取原文并翻译 | 示例
           

摘要

Neurons in the medial vestibular nucleus (MVN) show a wide range of axonal projection pathways, intrinsic firing properties, and responses to head movements. To determine whether MVN neurons participating in the vestibu-locular reflexes (VOR) have distinctive electrophysiological properties related to their output pathways, a new preparation was devised using transverse brain slices containing the chicken MVN and abducens nucleus. Biocytin Alexa Fluor was injected extracellularly into the abducens nucleus so that MVN neurons whose axons projected to the ipsilateral (MVN/ABi) and contralateral (MVN/ABc) abducens nuclei were labeled selectively. Whole-cell, patch-clamp recordings were performed to study the active and passive membrane properties, sodium conductances, and spontaneous synaptic events in morphologically-identified MVN/AB neurons and compare them to MVN neurons whose axons could not be traced (MVN). Located primarily in the rostral half of the ventrolateral part of the MVN, MVN/AB neurons mainly have stellate cell bodies with diameters of 20-25 mum. Compared to MVN neurons, MVN/ABi and MVN/ABc neurons had lower input resistances. Compared to all other MVN neuron groups studied, MVN/ABc neurons showed unique firing properties, including type A-like waveform, silence at resting membrane potential, and failure to fire repetitively on depolarization. It is interesting that the frequency of spontaneous excitatory and inhibitory synaptic events was similar for all the MVN neurons studied. However, the ratio for miniature to spontaneous inhibitory events was significantly lower for MVN/ABi neurons compared to MVN neurons, suggesting that MVN/ABi neurons retained a larger number and/or more active inhibitory presynaptic neurons within the brain slices. Also, MVN/ ABi neurons had miniature excitatory postsynaptic currents (mEPSCs) with slower decay time and half width compared to MVN neurons. Altogether, these findings underscore the diversity of electrophysiological properties of MVN neuron classes distinguished by axonal projection pathways. This represents the first study of MVN/AB neurons in brain slice preparations and supports the concept that the in vitro brain slice preparation provides an advantageous model to investigate the cellular and molecular events in vestibular signal processing.
机译:前庭内侧神经核(MVN)中的神经元显示出广泛的轴突投射途径,内在的发射特性以及对头部运动的反应。为了确定参与前庭眼反射(VOR)的MVN神经元是否具有与其输出通路相关的独特电生理特性,使用含有鸡MVN和外展核的横断脑切片设计了一种新的制剂。将生物胞素Alexa Fluor胞外注射到外展核中,以便选择性标记其轴突投射到同侧(MVN / ABi)和对侧(MVN / ABc)外展核的MVN神经元。进行全细胞膜片钳记录来研究形态学上确定的MVN / AB神经元的主动和被动膜特性,钠电导和自发突触事件,并将它们与无法追踪轴突的MVN神经元进行比较(MVN / n )。 MVN / AB神经元主要位于MVN腹侧部分的前半部分,主要具有星状细胞体,直径为20-25微米。与MVN / n神经元相比,MVN / ABi和MVN / ABc神经元具有较低的输入电阻。与研究的所有其他MVN神经元组相比,MVN / ABc神经元显示出独特的放电特性,包括A型波形,静息膜电位下的沉默以及去极化时无法重复发射。有趣的是,所有研究的MVN神经元的自发兴奋性和抑制性突触事件的频率都相似。但是,与MVN / n神经元相比,MVN / ABi神经元的微型与自发抑制事件比率明显较低,这表明MVN / ABi神经元在脑切片中保留了大量和/或更具活性的突触前神经元。此外,与MVN / n神经元相比,MVN / ABi神经元具有微型兴奋性突触后电流(mEPSC),衰减时间较慢,宽度只有一半。总而言之,这些发现强调了以轴突投射途径为特征的MVN神经元类的电生理特性的多样性。这代表了对脑切片制剂中MVN / AB神经元的首次研究,并支持了体外脑切片制剂为研究前庭信号处理中的细胞和分子事件提供了有利模型的概念。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号