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听觉前脑神经元跟踪时间扭曲自然刺激的时间特征。

Auditory forebrain neurons track temporal features of time-warped natural stimuli.

机构信息

Institute for Learning and Brain Sciences, University of Washington, 1715 NE Columbia Rd, Box 357988, Seattle, WA, 98195, USA.

出版信息

J Assoc Res Otolaryngol. 2014 Feb;15(1):131-8. doi: 10.1007/s10162-013-0418-8. Epub 2013 Oct 16.

Abstract

A fundamental challenge for sensory systems is to recognize natural stimuli despite stimulus variations. A compelling example occurs in speech, where the auditory system can recognize words spoken at a wide range of speeds. To date, there have been more computational models for time-warp invariance than experimental studies that investigate responses to time-warped stimuli at the neural level. Here, we address this problem in the model system of zebra finches anesthetized with urethane. In behavioral experiments, we found high discrimination accuracy well beyond the observed natural range of song variations. We artificially sped up or slowed down songs (preserving pitch) and recorded auditory responses from neurons in field L, the avian primary auditory cortex homolog. We found that field L neurons responded robustly to time-warped songs, tracking the temporal features of the stimuli over a broad range of warp factors. Time-warp invariance was not observed per se, but there was sufficient information in the neural responses to reliably classify which of two songs was presented. Furthermore, the average spike rate was close to constant over the range of time warps, contrary to recent modeling predictions. We discuss how this response pattern is surprising given current computational models of time-warp invariance and how such a response could be decoded downstream to achieve time-warp-invariant recognition of sounds.

摘要

感觉系统面临的一个基本挑战是,即使在刺激变化的情况下,也要识别自然刺激。在言语中就存在一个引人注目的例子,听觉系统可以识别以各种速度说出的单词。迄今为止,关于时间扭曲不变性的计算模型比在神经水平上研究对时间扭曲刺激的反应的实验研究要多。在这里,我们在麻醉的斑胸草雀模型系统中解决了这个问题。在行为实验中,我们发现了很高的辨别准确率,远远超出了观察到的歌曲变化的自然范围。我们人为地加快或减慢歌曲(保持音高),并从场 L(鸟类初级听觉皮层的同源物)中的神经元记录听觉反应。我们发现,场 L 神经元对时间扭曲的歌曲有强烈的反应,能够在广泛的扭曲因子范围内跟踪刺激的时间特征。时间扭曲不变性本身并没有被观察到,但在神经反应中存在足够的信息,可以可靠地对呈现的两首歌曲进行分类。此外,与最近的建模预测相反,平均尖峰率在时间扭曲范围内接近常数。我们讨论了这种反应模式是如何与当前的时间扭曲不变性计算模型相矛盾的,以及这种反应如何在下游被解码,以实现对声音的时间扭曲不变性识别。

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