整合和恢复过程有助于北方豹蛙中脑神经元的时间选择性。

T B Alder, G J Rose
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引用次数: 56

摘要

本研究探讨了听觉动物中脑振幅调制选择性的机制。在北斑蛙的半圆形环细胞外记录了单个细胞。根据它们的反应潜伏期和对脉冲重复率的选择性,确定了两种生理上不同的神经元类别。其中一组细胞反应潜伏期短(中位数= 31 ms),对低于40 Hz的脉冲重复率反应最好。调谐到低幅度调制率很大程度上取决于恢复过程和相位响应特性。第二组的细胞潜伏期长得多(中位数=81毫秒),并且通常对大于40-50 Hz的脉冲重复率有选择性。对较高调幅率的敏感性是由积分过程引起的;这些单元只有在最小脉冲密度(调幅率)下出现阈值脉冲数时才有响应。当调幅率高于其最佳速率时,它们的响应下降,显然是由于脉冲之间的恢复时间不足。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration and recovery processes contribute to the temporal selectivity of neurons in the midbrain of the northern leopard frog, Rana pipiens.

This study examined the mechanisms underlying amplitude modulation selectivity in the anuran auditory midbrain. Single units were recorded extracellularly in the torus semicircularis of the northern leopard frog, Rana pipiens. Two physiologically distinct classes of neurons were identified, based on their response latencies and their selectivities to pulse repetition rates. Cells in one group had short response latencies (median = 31 ms) and responded best to pulse repetition rates below 40 Hz. Tuning to low amplitude modulation rates was largely determined by recovery processes and phasic response properties. Cells in the second group had much longer latencies (median=81 ms) and were generally selective for pulse repetition rates greater than 40-50 Hz. Sensitivity to higher amplitude modulation rates resulted from integration processes; these units only responded when a threshold number of pulses were presented at a minimum pulse density (amplitude modulation rate). At amplitude modulation rates above their best rate, their responses decreased, apparently due to inadequate recovery time between pulses.

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