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仓鸮在模拟回声条件下的听觉空间辨别能力。

Auditory spatial discrimination by barn owls in simulated echoic conditions.

作者信息

Spitzer Matthew W, Bala Avinash D S, Takahashi Terry T

机构信息

Institute of Neuroscience, University of Oregon, Eugene, Oregon 97403, USA.

出版信息

J Acoust Soc Am. 2003 Mar;113(3):1631-45. doi: 10.1121/1.1548152.

Abstract

In humans, directional hearing in reverberant conditions is characterized by a "precedence effect," whereby directional information conveyed by leading sounds dominates perceived location, and listeners are relatively insensitive to directional information conveyed by lagging sounds. Behavioral studies provide evidence of precedence phenomena in a wide range of species. The present study employs a discrimination paradigm, based on habituation and recovery of the pupillary dilation response, to provide quantitative measures of precedence phenomena in the barn owl. As in humans, the owl's ability to discriminate changes in the location of lagging sources is impaired relative to that for single sources. Spatial discrimination of lead sources is also impaired, but to a lesser extent than discrimination of lagging sources. Results of a control experiment indicate that sensitivity to monaural cues cannot account for discrimination of lag source location. Thus, impairment of discrimination ability in the two-source conditions most likely reflects a reduction in sensitivity to binaural directional information. These results demonstrate a similarity of precedence effect phenomena in barn owls and humans, and provide a basis for quantitative comparison with neuronal data from the same species.

摘要

在人类中,混响环境下的定向听觉具有“优先效应”,即领先声音传达的定向信息主导了感知位置,而听众对滞后声音传达的定向信息相对不敏感。行为研究为广泛物种中的优先现象提供了证据。本研究采用基于瞳孔扩张反应的习惯化和恢复的辨别范式,以提供仓鸮中优先现象的定量测量。与人类一样,相对于单一声源,猫头鹰辨别滞后声源位置变化的能力受到损害。对领先声源的空间辨别能力也受到损害,但程度小于对滞后声源的辨别。对照实验结果表明,对单耳线索的敏感性不能解释对滞后声源位置的辨别。因此,在双声源条件下辨别能力的损害很可能反映了对双耳定向信息敏感性的降低。这些结果证明了仓鸮和人类中优先效应现象的相似性,并为与同一物种的神经元数据进行定量比较提供了基础。

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