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首页> 外文期刊>The Journal of the Acoustical Society of America >Psychophysical assessment of the level-dependent representation of high-frequency spectral notches in the peripheral auditory system
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Psychophysical assessment of the level-dependent representation of high-frequency spectral notches in the peripheral auditory system

机译:对周围听觉系统中高频频谱缺口的水平依赖性表示的心理生理评估

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To discriminate between broadband noises with and without a high-frequency spectral notch is more difficult at 70-80 dB sound pressure level than at lower or higher levels [Alves-Pinto, A. and Lopez-Poveda, E. A. (2005). "Detection of high-frequency spectral notches as a function of level," J. Acoust. Soc. Am. 118, 2458-2469]. One possible explanation is that the notch is less clearly represented internally at 70-80 dB SPL than at any other level. To test this hypothesis, forward-masking patterns were measured for flat-spectrum and notched noise maskers for masker levels of 50, 70, 80, and 90 dB SPL. Masking patterns were measured in two conditions: (1) fixing the masker-probe time interval at 2 ms and (2) varying the interval to achieve similar masked thresholds for different masker levels. The depth of the spectral notch remained approximately constant in the fixed-interval masking patterns and gradually decreased with increasing masker level in the variable-interval masking patterns. This difference probably reflects the effects of peripheral compression. These results are inconsistent with the nonmonotonic level-dependent performance in spectral discrimination. Assuming that a forward-masking pattern is a reasonable psychoacoustical correlate of the auditory-nerve rate-profile representation of the stimulus spectrum, these results undermine the common view that high-frequency spectral notches must be encoded in the rate-profile of auditory-nerve fibers. (c) 2008 Acoustical Society of America.
机译:在70-80 dB声压级下,要区分具有和不具有高频频谱陷波的宽带噪声,要比处于较低或较高水平时更难[Alves-Pinto,A.和Lopez-Poveda,E. A.(2005)。 “高频频谱缺口的检测与水平的关系,” J。Acoust。 Soc。上午。 118,2458-2469]。一种可能的解释是,在70-80 dB SPL时,在内部比在任何其他级别上都不太清楚地表示该陷波。为了检验该假设,测量了用于50、70、80和90 dB SPL的掩蔽电平的平面频谱和带缺口噪声掩蔽的前向掩蔽模式。在两个条件下测量了掩蔽模式:(1)将掩蔽探针时间间隔固定为2 ms,以及(2)更改间隔以针对不同掩蔽级别获得相似的掩蔽阈值。频谱陷波的深度在固定间隔的掩膜图案中保持近似恒定,并随着可变间隔的掩膜图案中掩膜水平的增加而逐渐减小。这种差异可能反映了外围压缩的影响。这些结果与光谱识别中非单调能级依赖的性能不一致。假设前向屏蔽模式是刺激频谱的听觉神经速率分布图表示的合理心理声学关联,那么这些结果将破坏通常的观点,即高频频谱陷波必须编码在听觉神经速率图中纤维。 (c)2008年美国声学学会。

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