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首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Auditory performance in bald eagles and red-tailed hawks: a comparative study of hearing in diurnal raptors
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Auditory performance in bald eagles and red-tailed hawks: a comparative study of hearing in diurnal raptors

机译:秃鹰和红尾鹰中的听觉性能:在户叻料队中听证的比较研究

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摘要

Collision with wind turbines is a conservation concern for eagles with population abundance implications. The development of acoustic alerting technologies to deter eagles from entering hazardous air spaces is a potentially significant mitigation strategy to diminish associated morbidity and mortality risks. As a prelude to the engineering of deterrence technologies, auditory function was assessed in bald eagles (Haliaeetus leucocephalus), as well as in red-tailed hawks (Buteo jamaicensis). Auditory brainstem responses (ABRs) to a comprehensive battery of clicks and tone bursts varying in level and frequency were acquired to evaluate response thresholds, as well as suprathreshold response characteristics of wave I of the ABR, which represents the compound potential of the VIII cranial nerve. Sensitivity curves exhibited an asymmetric convex shape similar to those of other avian species, response latencies decreased exponentially with increasing stimulus level and response amplitudes grew with level in an orderly manner. Both species were responsive to a frequency band at least four octaves wide, with a most sensitive frequency of 2 kHz, and a high-frequency limit of approximately 5.7 kHz in bald eagles and 8 kHz in red-tailed hawks. Findings reported here provide a framework within which acoustic alerting signals might be developed.
机译:与风力涡轮机的碰撞是对具有人口丰富含义的老鹰的保护问题。声音警报技术的发展,阻止Eagles进入危险空间,是一种潜在的显着缓解策略,以减少相关的发病率和死亡率风险。作为威慑技术的工程的前奏,在秃鹰(Haliaeetus Leucocephalus)以及红尾鹰(Buteo Jamaicensis)中评估了听觉功能。获取听觉脑干响应(ABR)到综合电池的咔哒声和色调突发在水平和频率变化,以评估响应阈值,以及ABR波I的Suprathreshold响应特性,这代表了VIII颅神经的复合电位。敏感性曲线表现出类似于其他禽类种类的不对称凸形形状,响应延迟随着刺激水平的增加和响应幅度以有序的方式增长响应幅度。两个物种对频段响应至少四个八个倍增,具有最敏感的频率为2 kHz,在秃顶的秃鹰中,在秃顶的秃鹰中的大约5.7kHz的高频限制和8kHz。此处报告的调查结果提供了一种框架,可以在该框架内开发声学警报信号。

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