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Natural ITD statistics predict human auditory spatial perception

机译:自然ITD统计数据预测人类听觉空间感知

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摘要

A neural code adapted to the statistical structure of sensory cues may optimize perception. We investigated whether interaural time difference (ITD) statistics inherent in natural acoustic scenes are parameters determining spatial discriminability. The natural ITD rate of change across azimuth (ITDrc) and ITD variability over time (ITDv) were combined in a Fisher information statistic to assess the amount of azimuthal information conveyed by this sensory cue. We hypothesized that natural ITD statistics underlie the neural code for ITD and thus influence spatial perception. To test this hypothesis, sounds with invariant statistics were presented to measure human spatial discriminability and spatial novelty detection. Human auditory spatial perception showed correlation with natural ITD statistics, supporting our hypothesis. Further analysis showed that these results are consistent with classic models of ITD coding and can explain the ITD tuning distribution observed in the mammalian brainstem.
机译:适用于感觉线索统计结构的神经密码可以优化感知。我们调查了自然声学场景中固有的腔间时间差(ITD)统计是确定空间辨别性的参数。 Azimuth(ITDRC)和ITD变化随时间(ITDV)的自然ITD变化率(ITDV)在Fisher信息统计中组合,以评估该感官提示所传达的方位传信息的数量。我们假设自然ITD统计数据为ITD的神经密码提出,从而影响空间感知。为了测试这一假设,提出了具有不变统计数据的声音来测量人类空间辨别性和空间新奇检测。人类听觉空间感知与自然ITD统计数据相关,支持我们的假设。进一步的分析表明,这些结果与ITD编码的经典模型一致,并且可以解释在哺乳动物脑干中观察到的ITD调整分布。

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