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背景噪声对前景声音的皮层编码产生多种影响。

Background noise exerts diverse effects on the cortical encoding of foreground sounds.

作者信息

Malone B J, Heiser Marc A, Beitel Ralph E, Schreiner Christoph E

机构信息

Coleman Memorial Laboratory, Department of Otolaryngology-Head and Neck Surgery, University of California, San Francisco, California;

Department of Psychiatry, Child and Adolescent Division, UCLA Semel Institute for Neuroscience and Behavior, Los Angeles, California.

出版信息

J Neurophysiol. 2017 Aug 1;118(2):1034-1054. doi: 10.1152/jn.00152.2017. Epub 2017 May 10.

Abstract

In natural listening conditions, many sounds must be detected and identified in the context of competing sound sources, which function as background noise. Traditionally, noise is thought to degrade the cortical representation of sounds by suppressing responses and increasing response variability. However, recent studies of neural network models and brain slices have shown that background synaptic noise can improve the detection of signals. Because acoustic noise affects the synaptic background activity of cortical networks, it may improve the cortical responses to signals. We used spike train decoding techniques to determine the functional effects of a continuous white noise background on the responses of clusters of neurons in auditory cortex to foreground signals, specifically frequency-modulated sweeps (FMs) of different velocities, directions, and amplitudes. Whereas the addition of noise progressively suppressed the FM responses of some cortical sites in the core fields with decreasing signal-to-noise ratios (SNRs), the stimulus representation remained robust or was even significantly enhanced at specific SNRs in many others. Even though the background noise level was typically not explicitly encoded in cortical responses, significant information about noise context could be decoded from cortical responses on the basis of how the neural representation of the foreground sweeps was affected. These findings demonstrate significant diversity in signal in noise processing even within the core auditory fields that could support noise-robust hearing across a wide range of listening conditions. The ability to detect and discriminate sounds in background noise is critical for our ability to communicate. The neural basis of robust perceptual performance in noise is not well understood. We identified neuronal populations in core auditory cortex of squirrel monkeys that differ in how they process foreground signals in background noise and that may contribute to robust signal representation and discrimination in acoustic environments with prominent background noise.

摘要

在自然聆听条件下,必须在竞争性声源(即背景噪声)的背景中检测和识别许多声音。传统上,人们认为噪声会通过抑制反应和增加反应变异性来降低声音的皮层表征。然而,最近对神经网络模型和脑切片的研究表明,背景突触噪声可以改善信号的检测。由于声学噪声会影响皮层网络的突触背景活动,它可能会改善皮层对信号的反应。我们使用尖峰序列解码技术来确定连续白噪声背景对听觉皮层中神经元簇对前景信号(即不同速度、方向和幅度的调频扫描(FM))反应的功能影响。虽然随着信噪比(SNR)的降低,添加噪声会逐渐抑制核心区域中一些皮层部位的FM反应,但在许多其他部位,刺激表征在特定的SNR下仍然稳健,甚至显著增强。即使背景噪声水平通常不会在皮层反应中明确编码,但基于前景扫描的神经表征如何受到影响,可以从皮层反应中解码出关于噪声背景的重要信息。这些发现表明,即使在核心听觉区域内,噪声处理中的信号也存在显著差异,这可能支持在广泛的聆听条件下实现抗噪声听力。在背景噪声中检测和辨别声音的能力对我们的交流能力至关重要。在噪声中稳健感知表现的神经基础尚未得到很好的理解。我们在松鼠猴的核心听觉皮层中识别出了神经元群体,它们在处理背景噪声中的前景信号方面存在差异,这可能有助于在具有突出背景噪声的声学环境中实现稳健的信号表征和辨别。

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