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首页> 外文期刊>The Journal of Physiology >Action potential initiation in the peripheral terminals of cold-sensitive neurones innervating the guinea-pig cornea.
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Action potential initiation in the peripheral terminals of cold-sensitive neurones innervating the guinea-pig cornea.

机译:作用于豚鼠角膜的冷敏感神经元的外周末端的动作电位启动。

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摘要

The site at which action potentials initiate within the terminal region of unmyelinated sensory axons has not been resolved. Combining recordings of nerve terminal impulses (NTIs) and collision analysis, the site of action potential initiation in guinea-pig corneal cold receptors was determined. For most receptors (77%), initiation mapped to a point in the time domain that was closer to the nerve terminal than to the site of electrical stimulation at the back of the eye. Guinea-pig corneal cold receptors are Adelta-neurones that lose their myelin sheath at the point where they enter the cornea, and therefore their axons conduct more slowly within the cornea. Allowing for this inhomogeneity in conduction speed, the resulting spatial estimates of action potential initiation sites correlated with changes in NTI shape predicted by simulation of action potentials initiating within a nerve terminal. In some receptors, more than one NTI shape was observed. Simulations of NTI shape suggest that the origin of differing NTI shapes result from action potentials initiating at different, spatially discrete, locations within the nerve terminal. Importantly, the relative incidence of NTI shapes resulting from action potential initiation close to the nerve termination increased during warming when nerve activity decreased, indicating that the favoured site of action potential initiation shifts toward the nerve terminal when it hyperpolarizes. This finding can be explained by a hyperpolarization-induced relief of Na(+) channel inactivation in the nerve terminal. The results provide direct evidence that the molecular entities responsible for stimulus transduction and action potential initiation reside in parallel with one another in the unmyelinated nerve terminals of cold receptors.
机译:在没有髓鞘的感觉轴突末端区域内动作电位起始的位置尚未被解析。结合神经末梢冲动(NTI)的记录和碰撞分析,确定了豚鼠角膜冷受体中动作电位的起始位点。对于大多数受体(77%),起始点映射到时域中比眼尾电刺激部位更靠近神经末梢的点。豚鼠角膜冷受体是Adelta-neurones,它们在进入角膜时会失去髓鞘,因此它们的轴突在角膜中的传导更慢。考虑到传导速度的这种不均匀性,所产生的动作电位起始位点的空间估计与通过模拟神经末梢内的动作电位而预测的NTI形状的变化相关。在一些受体中,观察到超过一种NTI形状。 NTI形状的模拟表明,不同NTI形状的起源是由在神经末梢内不同的,空间上不连续的位置启动的动作电位产生的。重要的是,在升温过程中,当神经活动减少时,由靠近神经末梢的动作电位启动引起的NTI形状的相对发生率增加,这表明当动作偏向超极化时,首选的动作电位起始位置会向神经末梢转移。这一发现可以通过神经末梢的超极化诱导的Na(+)通道失活缓解来解释。这些结果提供了直接的证据,表明负责刺激转导和动作电位启动的分子实体彼此平行地存在于冷受体的无髓神经末端。

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