听觉场景分析与感觉记忆:听觉N100m的作用。

P J C May, H Tiitinen
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引用次数: 0

摘要

我们考虑听觉流的神经动力学,瞬时听觉事件的知觉分组,通过使用神经建模和脑磁图(MEG)测量在人类。我们证明了反馈抑制强度的空间变化导致了与动物模型相似的微分幅度调制(AM)调谐。在我们的模型中,神经元选择性地对在不同的发作-发作间刺激间隔(ISIs)出现的刺激做出反应,并且它们的总活动(对应于MEG信号)在快速ISIs表现出短暂和持续反应(SRs)。在脑磁图测量中,在0-1950 ms的ISIs下,我们观察到该模型预测的瞬态N100m和SRs,在200 ms以下的ISIs下,离散刺激出现了显著的SR。我们的研究结果解释了为什么在快速刺激下,尽管听觉皮层继续对刺激做出强烈反应,但听觉N100m的振幅却明显减弱。结果表明,较长和较短的听觉记忆形式可能分别反映在N100m和SR中。由于SR的出现与被感知为听觉流的刺激相一致,我们的研究表明,由短暂和持续的皮层活动索引的听觉记忆可能是听觉场景分析的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Auditory scene analysis and sensory memory: the role of the auditory N100m.

We consider the neural dynamics underlying auditory streaming, the perceptual grouping of transient auditory events, by using neural modeling and magnetoencephalographic (MEG) measurements in humans. We demonstrate that spatial variations in the strength of feedback inhibition leads to differential amplitude modulation (AM) tuning resembling that found in animal models. In our model, neurons respond selectively to stimuli presented at different onset-to-onset interstimulus intervals (ISIs), and their summed activity (corresponding to the MEG signal) exhibits both transient and sustained responses (SRs) at fast ISIs. In MEG measurements utilizing 2-s trains of 50-ms stimuli presented at 0-1950 ms ISIs, we observed the transient N100m and SRs predicted by the model, with a prominent SR emerging for discrete stimuli at ISIs below 200 ms. Our results explain why, at fast stimulus rates, the amplitude of the auditory N100m appears to be strongly attenuated even though auditory cortex continues to respond vigorously to the stimuli. The results suggest that the longer and shorter forms of auditory sensory memory may be reflected in the N100m and the SR, respectively. As the emergence of the SR coincides with the stimuli being perceived as auditory streams, our study suggests that auditory sensory memory as indexed by transient and sustained cortical activity might underlie auditory scene analysis.

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