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蜘蛛机械感受器神经元中的慢适应性

Slow adaptation in spider mechanoreceptor neurons.

作者信息

Höger Ulli, French Andrew S

机构信息

Department of Physiology and Biophysics, Dalhousie University, Halifax, NS, B3H 1X5, Canada.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2005 May;191(5):403-11. doi: 10.1007/s00359-004-0597-1. Epub 2005 Mar 5.

Abstract

Slow adaptation of action potential firing is a common but poorly understood property of sensory neurons. We quantified slow adaptation in a cuticular mechanoreceptor organ of the spider, Cupiennius salei, by stimulating with continuous pseudorandom mechanical displacements while recording action potentials intracellularly from the cell bodies. Firing rate declined over a period of several minutes before reaching a steady level at about half the initial rate. This slow adaptation was fitted by an exponential decay with mean time constant of 18.5 s. Recovery from slow adaptation was also fitted by an exponential process, but with a longer time constant of 167 s. The receptor potential produced by the same stimulation protocol did not change its amplitude or dynamics, showing that slow adaptation occurs during action potential encoding from the receptor potential. Experiments with chemical blockers of calcium entry or the known potassium currents failed to reduce the slow adaptation. The Na+/K+ pump blocker Ouabain decreased the time constant of slow adaptation, suggesting that ion accumulation is involved. In some experiments, a second class of small action potentials were observed, which were tentatively attributed to failed conduction from the sensory dendrite through the soma to the axon.

摘要

动作电位发放的缓慢适应是感觉神经元常见但却了解甚少的一种特性。我们通过用连续伪随机机械位移刺激蜘蛛(哥斯达黎加流浪蜘蛛)的一种表皮机械感受器器官,同时从细胞体进行细胞内动作电位记录,来量化这种缓慢适应。在达到约为初始发放率一半的稳定水平之前,发放率在几分钟内下降。这种缓慢适应可用平均时间常数为18.5秒的指数衰减来拟合。从缓慢适应中恢复也可用指数过程来拟合,但时间常数更长,为167秒。相同刺激方案产生的感受器电位在幅度或动力学方面并未改变,这表明缓慢适应发生在从感受器电位进行动作电位编码的过程中。使用钙内流化学阻滞剂或已知钾电流阻滞剂的实验未能减少缓慢适应。钠钾泵阻滞剂哇巴因降低了缓慢适应的时间常数,这表明离子积累参与其中。在一些实验中,观察到了第二类小的动作电位,初步认为这是由于感觉树突通过胞体到轴突的传导失败所致。

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