The characteristics of slowly adapting mechanical sensory neurons in the trigeminal ganglia of crotaline snakes

Ai-Qing Zhu, S. Terashima
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Abstract

Mechanical pressure (P) and touch (M) neurons, two types of slowly adapting neurons, can be distinguished in the trigeminal ganglion of crotaline snakes, Trimeresurus flavoviridis, by their electrophysiological membrane properties. Intracellular stimulation and the recording of the responses from P and M neurons in vivo was performed with microelectrodes. The characteristics of the receptive field (RF) of both types of neurons were examined. P neurons had a much larger RF size and a higher mechanical threshold than those of M neurons. Both of them responded with discharges to mechanical stimulation. The active and passive electrophysiological membrane properties were measured from nine P and 18 M neurons. The active membrane properties of P neurons showed a larger amplitude and longer duration of action potential, a larger after-hyperpolarization with a longer duration to half-decay, and a higher electric threshold in response to intracellularly injected depolarizing current than M neurons. The passive membrane properties of P neurons showed a higher input resistance, much longer time constant, and larger capacitance than M neurons. The rebound spike which responded to injecting sufficient hyperpolarizing current was sometimes observed, and had a longer latency in P neurons than M neurons. These results indicated that some electrophysiological membrane properties of primary sensory neurons are dependent on their sensory modalities.
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crotaline蛇三叉神经节缓慢适应机械感觉神经元的特征
三叉神经节中的机械压力神经元(P)和触觉神经元(M)是两种适应缓慢的神经元,可通过其电生理膜特性来区分。细胞内刺激和记录体内P和M神经元的反应是用微电极进行的。观察两种神经元的感受野(RF)特征。P神经元比M神经元具有更大的RF大小和更高的机械阈值。他们都对机械刺激有放电反应。测量了9个P神经元和18个M神经元的主动和被动电生理膜特性。P神经元的活性膜特性表现出比M神经元更大的动作电位振幅和更长的持续时间,更大的超极化后半衰减持续时间,以及更高的响应胞内注射去极化电流的电阈值。P神经元的被动膜特性表现出比M神经元更高的输入电阻、更长的时间常数和更大的电容。在P神经元中,有时会观察到对注入足够的超极化电流作出反应的反弹峰,其潜伏期比M神经元长。这些结果表明,初级感觉神经元的一些电生理膜特性依赖于它们的感觉模式。
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