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首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Eight-choice sound localization by manatees: performance abilities and head related transfer functions
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Eight-choice sound localization by manatees: performance abilities and head related transfer functions

机译:海牛对八种声音的定位:演奏能力和与头部相关的传递函数

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Two experiments investigated the ability and means by which two male Florida manatees (Trichechus manatus latirostris) may determine the direction of a sound source. An eight-choice discrimination paradigm was used to determine the subjects' sound localization abilities of five signal conditions covering a range of frequencies, durations, and levels. Subjects performed above the 12.5 % chance level for all broadband frequencies and were able to localize sounds over a large level range. Errors were typically located to either side of the signal source location when presented in the front 180A degrees but were more dispersed when presented from locations behind the subject. Front-to-back confusions were few and accuracy was greater when signals originated from the front 180A degrees. Head-related transfer functions were measured to determine if frequencies were filtered by the manatee body to create frequency-specific interaural level differences (ILDs). ILDs were found for all frequencies as a function of source location, although they were largest with frequencies above 18 kHz and when signals originated to either side of the subjects. Larger ILDs were found when the signals originated behind the subjects. A shadowing-effect produced by the body may explain the relatively low occurrence of front-back confusions in the localization study.
机译:两项实验研究了两种雄性佛罗里达海牛(Trichechus manatus latirostris)可以确定声源方向的能力和方法。八选择判别范式用于确定受试者在五个信号条件下的声音定位能力,这些信号条件涵盖了频率,持续时间和水平的范围。在所有宽带频率上,受试者的表现均高于12.5%的机会水平,并且能够在较大的水平范围内定位声音。当以正面180A度呈现时,误差通常位于信号源位置的任一侧,但是当从对象后面的位置呈现时,误差则更分散。当信号来自正面180A度时,前后混淆很少,准确性更高。测量与头部相关的传递函数,以确定频率是否被海牛体过滤以产生特定于频率的耳间水平差(ILD)。尽管在频率高于18 kHz且信号发源于受试者任一侧时最大,但发现所有频率的ILD都是源位置的函数。当信号起源于受试者后时,发现更大的ILD。身体产生的阴影效应可以解释在定位研究中发生前后混淆的可能性相对较低。

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