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矛隼(矛隼属)的弯曲飞行路径和侧向视觉。

Curved flight paths and sideways vision in peregrine falcons (Falco peregrinus).

作者信息

Tucker V A, Tucker A E, Akers K, Enderson J H

机构信息

Department of Biology, Duke University, Box 90338, Durham, NC 27708-0338, USA.

出版信息

J Exp Biol. 2000 Dec;203(Pt 24):3755-63. doi: 10.1242/jeb.203.24.3755.

Abstract

When diving at prey straight ahead from great distances at high speeds, a peregrine has a conflict between vision and aerodynamics: it must turn its head approximately 40 degrees to one side to see the prey with maximum visual acuity at the deep fovea of one eye, but the head in this position increases aerodynamic drag and slows the falcon down. The falcon could resolve this conflict by holding its head straight and flying along a logarithmic spiral path that keeps the line of sight of the deep fovea pointed sideways at the prey. Wild peregrines, observed with binoculars, telescopes and a tracking device, did approach prey the size of American robins (Turdus migratorius) and smaller birds from distances of up to 1500 m by holding their heads straight and flying along curved paths that resembled the logarithmic spiral.

摘要

当游隼从远距离高速径直扑向猎物时,它在视觉和空气动力学之间存在冲突:它必须将头部向一侧转动约40度,以便用一只眼睛的中央凹以最大视敏度看到猎物,但处于这个位置的头部会增加空气动力学阻力并使猎鹰减速。游隼可以通过保持头部伸直并沿着对数螺旋路径飞行来解决这个冲突,这样能使中央凹的视线侧向指向猎物。通过双筒望远镜、望远镜和跟踪设备观察到,野生游隼确实会伸直头部,沿着类似对数螺旋的弯曲路径,从高达1500米的距离接近美洲知更鸟(旅鸫)及更小的鸟类大小的猎物。

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