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首页> 外文期刊>Neuron >Adaptation to stimulus statistics in the perception and neural representation of auditory space.
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Adaptation to stimulus statistics in the perception and neural representation of auditory space.

机译:在听觉空间的感知和神经表示中适应刺激统计。

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摘要

Sensory systems are known to adapt their coding strategies to the statistics of their environment, but little is still known about the perceptual implications of such adjustments. We investigated how auditory spatial processing adapts to stimulus statistics by presenting human listeners and anesthetized ferrets with noise sequences in which interaural level differences (ILD) rapidly fluctuated according to a Gaussian distribution. The mean of the distribution biased the perceived laterality of a subsequent stimulus, whereas the distribution's variance changed the listeners' spatial sensitivity. The responses of neurons in the inferior colliculus changed in line with these perceptual phenomena. Their ILD preference adjusted to match the stimulus distribution mean, resulting in large shifts in rate-ILD functions, while their gain adapted to the stimulus variance, producing pronounced changes in neural sensitivity. Our findings suggest that processing of auditory space is geared toward emphasizing relative spatial differences rather than the accurate representation of absolute position.
机译:已知感觉系统使它们的编码策略适应其环境的统计,但是对于这种调节的感知影响仍然知之甚少。我们调查了听觉空间处理如何通过向人类听众和麻醉的雪貂呈现噪声序列(其中听觉水平差(ILD)根据高斯分布迅速波动)来适应刺激统计。分布的均值偏向于随后刺激的感知横向性,而分布的方差改变了听众的空间敏感性。下丘神经元的反应与这些知觉现象一致。他们调整了ILD偏好以匹配刺激分布平均值,从而导致速率ILD功能发生了较大变化,而他们的增益则适应了刺激方差,从而导致神经敏感性发生明显变化。我们的发现表明,听觉空间的处理旨在强调相对空间差异,而不是绝对位置的准确表示。

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