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调至适合鸟类眼睛的光线能促使其及早发现并躲避逼近的飞机。

Light tuned to the avian eye elicits early detection and escape from an approaching aircraft.

作者信息

Lunn Ryan Bradley, Blackwell Bradley, Baumhardt Patrice, Talbot Anne, Di Domenico Isaac, Fernández-Juricic Esteban

机构信息

Biological Sciences, Purdue University, West Lafayette, IN, USA.

USDA-APHIS/WS National Wildlife Research Center, Sandusky, OH, USA.

出版信息

R Soc Open Sci. 2025 Jun 4;12(6):250047. doi: 10.1098/rsos.250047. eCollection 2025 Jun.

Abstract

Collisions between birds and aircraft are a global problem. We identified different behavioural parameters affecting the probability of escape from a potential collision with an approaching aircraft, which is a function of the probability that the animal initiates an escape response (probability of reaction) and the probability of having enough time to escape (probability of sufficient time). Lights of high chromatic contrast tuned to the avian eye have been proposed as a solution to mitigate collisions. We approached Canada geese with a drone to estimate how aircraft lighting and changes in altitude, mimicking the flight phase where most strikes occur, affect parameters associated with the probability of escape. Onboard lights increased parameters associated with the probability of reaction at farther distances by promoting longer detection distances, which enabled the animal to initiate each stage of its escape response sooner leading to longer flight-initiation distances irrespective of altitude changes. Additionally, onboard lights increased parameters associated with the probability of sufficient time where longer detection distances allowed animals to escape away from (as opposed to towards) the approaching drone. Our findings have implications for the development of light technology to deter birds away from approaching vehicles, and other anthropogenic structures (such as wind turbines and solar facilities).

摘要

鸟类与飞机的碰撞是一个全球性问题。我们确定了不同的行为参数,这些参数会影响鸟类从与接近的飞机的潜在碰撞中逃脱的概率,而这一概率是动物启动逃脱反应的概率(反应概率)和有足够时间逃脱的概率(足够时间概率)的函数。已有人提出,将具有高色对比度且适合鸟类眼睛的灯光作为减轻碰撞的一种解决方案。我们用无人机靠近加拿大鹅,以估计飞机灯光以及高度变化(模拟大多数碰撞发生的飞行阶段)如何影响与逃脱概率相关的参数。机载灯光通过延长探测距离,增加了在更远距离处与反应概率相关的参数,这使动物能够更早地启动其逃脱反应的各个阶段,从而导致飞行起始距离更长,而与高度变化无关。此外,机载灯光增加了与足够时间概率相关的参数,更长的探测距离使动物能够远离(而不是靠近)接近的无人机逃脱。我们的研究结果对开发用于驱赶鸟类远离接近车辆及其他人为建筑(如风力涡轮机和太阳能设施)的灯光技术具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b57/12133346/21ae1aebf557/rsos.250047.f001.jpg

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