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耳蜗背侧核的神经建模:短持续时间音爆反应的互相关分析

Neural modeling of the dorsal cochlear nucleus: cross-correlation analysis of short-duration tone-burst responses.

作者信息

Davis K A, Voigt H F

机构信息

Department of Biomedical Engineering, Boston University, MA 02215-2407.

出版信息

Biol Cybern. 1994;71(6):511-21. doi: 10.1007/BF00198469.

Abstract

A conceptual model of a portion of dorsal cochlear nucleus (DCN) neural circuitry has emerged over the past two decades. This model suggests that the response properties of the DCN's major projection neurons, called type IV units, are due, in part, to the behavior of local circuit inhibitory interneurons called type II units (Young and Brownell 1976). Cross-correlation studies of simultaneously recorded pairs of DCN units in decerebrate cat derived from 50-s best frequency (BF) stimuli are consistent with and have extended this conceptual model (Voigt and Young 1980, 1985, 1988, 1990). Interestingly, Gochin et al. (1989) found no signs of inhibition in the anesthetized rat DCN in cross-correlograms derived from 55-ms short-duration BF tone bursts. This seemingly contradictory result has motivated this study. Computer simulations were run using our network model of the intrinsic DCN neural circuitry. This model has previously been shown to reproduce the major features of both type II and type IV rate-level curves and the inhibitory trough (IT) observed in cross-correlograms derived from long-duration stimuli (Voigt and Davis 1994). The goal was to study the stimulus-duration-dependent strength of ITs in the cross-correlograms derived from short-duration BF tone-burst stimuli. The results suggest that ITs may not be detectable when the stimulus duration is 50 ms but may be detectable when the stimulus duration is 200 ms or greater. Furthermore, when the ITs are detected in cross-correlograms derived from 200-ms data sets, the strength of the IT, as measured by effectiveness, is comparable to the strength of ITs measured when the stimulus duration is 50 s.

摘要

在过去二十年中,出现了一个关于背侧耳蜗核(DCN)部分神经回路的概念模型。该模型表明,DCN主要投射神经元(称为IV型单位)的反应特性部分归因于局部回路抑制性中间神经元(称为II型单位)的行为(Young和Brownell,1976年)。对去脑猫中同时记录的DCN单位对进行的互相关研究,这些研究来自50秒的最佳频率(BF)刺激,与该概念模型一致并对其进行了扩展(Voigt和Young,1980年、1985年、1988年、1990年)。有趣的是,Gochin等人(1989年)在从55毫秒短持续时间BF音爆得出的互相关图中,未发现麻醉大鼠DCN中有抑制迹象。这一看似矛盾的结果推动了本研究。使用我们的DCN内在神经回路网络模型进行了计算机模拟。该模型先前已被证明能够再现II型和IV型速率-水平曲线的主要特征以及在从长时间刺激得出的互相关图中观察到的抑制谷(IT)(Voigt和Davis,1994年)。目标是研究从短持续时间BF音爆刺激得出的互相关图中IT的刺激持续时间依赖性强度。结果表明,当刺激持续时间为50毫秒时,IT可能无法检测到,但当刺激持续时间为200毫秒或更长时,可能可以检测到。此外,当在从200毫秒数据集得出的互相关图中检测到IT时,以有效性衡量的IT强度与刺激持续时间为50秒时测量的IT强度相当。

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