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港海豹(Phocoena phocoena)的等潜伏期轮廓和听觉加权函数。

Equal latency contours and auditory weighting functions for the harbour porpoise (Phocoena phocoena).

机构信息

Sea Mammal Research Unit, University of St Andrews, St Andrews, Fife KY16 8LB, UK.

出版信息

J Exp Biol. 2014 Feb 1;217(Pt 3):359-69. doi: 10.1242/jeb.091983.

Abstract

Loudness perception by human infants and animals can be studied under the assumption that sounds of equal loudness elicit equal reaction times (RTs). Simple RTs of a harbour porpoise to narrowband frequency-modulated signals were measured using a behavioural method and an RT sensor based on infrared light. Equal latency contours, which connect equal RTs across frequencies, for reference values of 150-200 ms (10 ms intervals) were derived from median RTs to 1 s signals with sound pressure levels (SPLs) of 59-168 dB re. 1 μPa and centre frequencies of 0.5, 1, 2, 4, 16, 31.5, 63, 80 and 125 kHz. The higher the signal level was above the hearing threshold of the harbour porpoise, the quicker the animal responded to the stimulus (median RT 98-522 ms). Equal latency contours roughly paralleled the hearing threshold at relatively low sensation levels (higher RTs). The difference in shape between the hearing threshold and the equal latency contours was more pronounced at higher levels (lower RTs); a flattening of the contours occurred for frequencies below 63 kHz. Relationships of the equal latency contour levels with the hearing threshold were used to create smoothed functions assumed to be representative of equal loudness contours. Auditory weighting functions were derived from these smoothed functions that may be used to predict perceived levels and correlated noise effects in the harbour porpoise, at least until actual equal loudness contours become available.

摘要

人类婴儿和动物的响度感知可以通过假设等响的声音会引起相等的反应时间(RT)来进行研究。使用行为方法和基于红外光的 RT 传感器,测量了宽吻海豚对窄带调频信号的简单 RT。对于参考值为 150-200 ms(10 ms 间隔)的 1 s 信号,从中位数 RT 到声压级(SPL)为 59-168 dB re. 1 μPa 和中心频率为 0.5、1、2、4、16、31.5、63、80 和 125 kHz 的信号,得出了等潜伏期轮廓,这些轮廓连接了频率上相等的 RT。信号水平高于宽吻海豚的听觉阈值时,动物对刺激的反应速度越快(中位数 RT 为 98-522 ms)。等潜伏期轮廓大致与相对较低的感觉水平的听觉阈值平行(较高的 RT)。在较高水平(较低的 RT)下,听觉阈值和等潜伏期轮廓之间的形状差异更为明显;对于低于 63 kHz 的频率,轮廓会变平。等潜伏期轮廓的水平与听觉阈值之间的关系用于创建平滑函数,这些函数被认为是等响轮廓的代表。可以从这些平滑函数中得出听觉加权函数,这些函数可用于预测宽吻海豚的感知水平和相关噪声效应,至少在实际等响轮廓可用之前是这样。

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