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通过双侧聆听虎皮鹦鹉(Melopsittacus undulatus)对声信号进行侧化。

Lateralization of acoustic signals by dichotically listening budgerigars (Melopsittacus undulatus).

机构信息

Department of Psychology, University at Buffalo, the State University of New York, Buffalo, New York 14260, USA.

出版信息

J Acoust Soc Am. 2011 Oct;130(4):2293-301. doi: 10.1121/1.3628335.

Abstract

Sound localization allows humans and animals to determine the direction of objects to seek or avoid and indicates the appropriate position to direct visual attention. Interaural time differences (ITDs) and interaural level differences (ILDs) are two primary cues that humans use to localize or lateralize sound sources. There is limited information about behavioral cue sensitivity in animals, especially animals with poor sound localization acuity and small heads, like budgerigars. ITD and ILD thresholds were measured behaviorally in dichotically listening budgerigars equipped with headphones in an identification task. Budgerigars were less sensitive than humans and cats, and more similar to rabbits, barn owls, and monkeys, in their abilities to lateralize dichotic signals. Threshold ITDs were relatively constant for pure tones below 4 kHz, and were immeasurable at higher frequencies. Threshold ILDs were relatively constant over a wide range of frequencies, similar to humans. Thresholds in both experiments were best for broadband noise stimuli. These lateralization results are generally consistent with the free field localization abilities of these birds, and add support to the idea that budgerigars may be able to enhance their cues to directional hearing (e.g., via connected interaural pathways) beyond what would be expected based on head size.

摘要

声音定位使人类和动物能够确定物体的方向,以便寻求或回避,并指示适当的位置来引导视觉注意。人耳时间差 (ITD) 和人耳强度差 (ILD) 是人类用于定位或侧向声源的两个主要线索。关于动物的行为线索敏感性,特别是对于那些声音定位能力差、头部较小的动物,如虎皮鹦鹉,信息有限。在识别任务中,通过给佩戴耳机的双侧聆听虎皮鹦鹉进行行为测量,得到了 ITD 和 ILD 阈值。虎皮鹦鹉的敏感性低于人类和猫,而与兔子、仓鸮和猴子更为相似,能够对双侧信号进行侧向定位。低于 4 kHz 的纯音的 ITD 阈值相对稳定,而在更高频率下则无法测量。ILD 阈值在很宽的频率范围内相对稳定,与人类相似。在这两个实验中,宽带噪声刺激的阈值最佳。这些侧化结果通常与这些鸟类的自由场定位能力一致,并支持这样一种观点,即虎皮鹦鹉可能能够增强其定向听觉的线索(例如,通过连接的耳间通路),超出基于头部大小的预期。

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