Suppr超能文献

未麻醉去大脑猫的背侧耳蜗核-前庭蜗神经核神经元及听神经纤维对调幅音和纯音的反应:自相关/功率谱分析

Responses of DCN-PVCN neurons and auditory nerve fibers in unanesthetized decerebrate cats to AM and pure tones: analysis with autocorrelation/power-spectrum.

作者信息

Kim D O, Sirianni J G, Chang S O

机构信息

Division of Otolaryngology, University of Connecticut Health Center, Farmington 06032.

出版信息

Hear Res. 1990 Apr;45(1-2):95-113. doi: 10.1016/0378-5955(90)90186-s.

Abstract

We investigated amplitude-modulated (AM) tone encoding behavior of dorsal and posteroventral cochlear-nucleus (DCN and PVCN) neurons and auditory nerve (AN) fibers in decerebrate unanesthetized cats. Some of the modulation transfer functions (MTFs) were narrowly-tuned band-pass functions; these included responses at moderate and high stimulus levels of DCN pause/build-type-III neurons and the following types of DCN and PVCN chopper neurons: chop-S and/or chop-type-I/III. Other MTFs were broad low-pass or complex functions. Chop-T neurons of the DCN and PVCN tended to exhibit low-pass or flat MTFs. The band-pass MTF neurons exhibited intrinsic oscillations (IOs) in responses to AM or pure tones. The IOs, which were detected in autocorrelation functions and power spectra, were closely correlated (r = 0.863) with the best envelope frequency (BEF). All of the AN fibers showed broad low-pass MTFs with some showing a rudimentary peak in the MTF. The MTFs of DCN-PVCN neurons and AN fibers showed, respectively: (1) BEFs ranging 50-500 Hz, and 400-1300 Hz; (2) upper cut-off frequencies ranging 200-1200 Hz, and 1600-3200 Hz. At stimulus levels of 60-85 dB SPL, maximum modulation gains were as high as 12 dB for DCN-PVCN neurons but were limited to below about 0 dB for AN fibers. The median dynamic ranges of DCN and PVCN neurons (51 and 42 dB, respectively) were substantially wider than those of the low and high spontaneous rate AN fibers (30 and 31 dB, respectively). The observation of higher modulation gain, wider dynamic range, and more narrowly-tuned MTF of DCN-PVCN neurons than AN fibers supports the concept that the capabilities to encode dynamic signals are enhanced in DCN-PVCN neurons compared with AN fibers.

摘要

我们研究了去大脑未麻醉猫的背侧和后腹侧耳蜗核(DCN和PVCN)神经元以及听神经(AN)纤维的调幅(AM)音调编码行为。一些调制传递函数(MTF)是窄调谐带通函数;这些包括DCN暂停/增强III型神经元在中等和高刺激水平下的反应,以及以下类型的DCN和PVCN斩波神经元:斩波-S和/或斩波-I/III型。其他MTF是宽低通或复杂函数。DCN和PVCN的斩波-T神经元倾向于表现出低通或平坦的MTF。带通MTF神经元在对AM或纯音的反应中表现出固有振荡(IO)。在自相关函数和功率谱中检测到的IO与最佳包络频率(BEF)密切相关(r = 0.863)。所有的AN纤维都表现出宽低通MTF,有些在MTF中显示出一个基本峰值。DCN-PVCN神经元和AN纤维的MTF分别显示:(1)BEF范围为50-500 Hz和400-1300 Hz;(2)上限截止频率范围为200-1200 Hz和1600-3200 Hz。在60-85 dB SPL的刺激水平下,DCN-PVCN神经元的最大调制增益高达12 dB,但AN纤维的最大调制增益限制在约0 dB以下。DCN和PVCN神经元的中位动态范围(分别为51和42 dB)明显宽于低和高自发率AN纤维的动态范围(分别为30和31 dB)。与AN纤维相比,DCN-PVCN神经元具有更高的调制增益、更宽的动态范围和更窄调谐的MTF,这一观察结果支持了这样一种概念,即与AN纤维相比,DCN-PVCN神经元编码动态信号的能力得到了增强。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验