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首页> 外文期刊>Journal of Comparative Physiology A: Neuroethology, Sensory, Neural, and Behavioral Physiology >Target-approaching behavior of barn owls (Tyto alba): influence of sound frequency
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Target-approaching behavior of barn owls (Tyto alba): influence of sound frequency

机译:仓n的目标接近行为:声频的影响

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We studied the influence of frequency on sound localization in free-flying barn owls by quantifying aspects of their target-approaching behavior to a distant sound source during ongoing auditory stimulation. In the baseline condition with a stimulus covering most of the owls hearing range (1–10 kHz), all owls landed within a radius of 20 cm from the loudspeaker in more than 80% of the cases and localization along the azimuth was more accurate than localization in elevation. When the stimulus contained only high frequencies (>5 kHz) no changes in striking behavior were observed. But when only frequencies from 1 to 5 kHz were presented, localization accuracy and precision decreased. In a second step we tested whether a further border exists at 2.5 kHz as suggested by optimality models. When we compared striking behavior for a stimulus having energy from 2.5 to 5 kHz with a stimulus having energy between 1 and 2.5 kHz, no consistent differences in striking behavior were observed. It was further found that pre-takeoff latency was longer for the latter stimulus than for baseline and that center frequency was a better predictor for landing precision than stimulus bandwidth. These data fit well with what is known from head-turning studies and from neurophysiology.
机译:我们通过量化持续进行的听觉刺激期间它们对远距离声源的目标接近行为的方面,研究了频率对自由飞行的谷仓猫头鹰声音定位的影响。在基线条件下,通过刺激覆盖大多数猫头鹰的听觉范围(1–10 kHz),在超过80%的情况下,所有猫头鹰均落在距扬声器20厘米半径内,并且沿方位角的定位比高程本地化。当刺激仅包含高频(> 5 kHz)时,未观察到打击行为的变化。但是,当仅显示1至5 kHz的频率时,定位精度和精度会降低。在第二步中,我们测试了最佳性模型建议的在2.5 kHz处是否存在另一个边界。当我们比较能量为2.5至5 kHz的刺激与能量为1至2.5 kHz的刺激的打击行为时,没有观察到一致的打击行为差异。进一步发现,后一种刺激的起飞前等待时间比基线更长,并且中心频率比着陆带宽更好地预测着陆精度。这些数据与转头研究和神经生理学所知非常吻合。

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