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幼年CBA小鼠下丘中行为性间隙检测的神经关联

Neural correlates of behavioral gap detection in the inferior colliculus of the young CBA mouse.

作者信息

Walton J P, Frisina R D, Ison J R, O'Neill W E

机构信息

Department of Surgery, University of Rochester School of Medicine & Dentistry, NY 14642-8629, USA.

出版信息

J Comp Physiol A. 1997 Aug;181(2):161-76. doi: 10.1007/s003590050103.

Abstract

The gap detection paradigm is frequently used in psychoacoustics to characterize the temporal acuity of the auditory system. Neural responses to silent gaps embedded in white-noise carriers, were obtained from mouse inferior colliculus (IC) neurons and the results compared to behavioral estimates of gap detection. Neural correlates of gap detection were obtained from 78 single neurons located in the central nucleus of the IC. Minimal gap thresholds (MGTs) were computed from single-unit gap functions and were found to be comparable, 1-2 ms, to the behavioral gap threshold (2 ms). There was no difference in MGTs for units in which both carrier intensities were collected. Single unit responses were classified based on temporal discharge patterns to steady-state noise bursts. Onset and primary-like units had the shortest mean MGTs (2.0 ms), followed by sustained units (4.0 ms) and phasic-off units (4.2 ms). The longest MGTs were obtained for inhibitory neurons (x = 14 ms). Finally, the time-course of behavioral and neurophysiological gap functions were found to be in good agreement. The results of the present study indicate the neural code necessary for behavioral gap detection is present in the temporal discharge patterns of the majority of IC neurons.

摘要

间隙检测范式在心理声学中经常被用于表征听觉系统的时间敏锐度。从小鼠下丘(IC)神经元获取对嵌入白噪声载体中的静音间隙的神经反应,并将结果与间隙检测的行为估计进行比较。间隙检测的神经关联是从位于IC中央核的78个单神经元获得的。最小间隙阈值(MGTs)是根据单单元间隙函数计算得出的,发现与行为间隙阈值(2毫秒)相当,为1 - 2毫秒。对于收集了两种载体强度的单元,其MGTs没有差异。基于对稳态噪声脉冲的时间放电模式对单单元反应进行分类。起始和初级样单元的平均MGTs最短(2.0毫秒),其次是持续单元(4.0毫秒)和相位关闭单元(4.2毫秒)。抑制性神经元的MGTs最长(x = 14毫秒)。最后,发现行为和神经生理间隙函数的时间进程高度一致。本研究结果表明,行为间隙检测所需的神经编码存在于大多数IC神经元的时间放电模式中。

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