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矛隼的性二态体型、猎物形态与捕猎成功率及其与飞行力学的关系:一项模拟研究。

Sexual size dimorphism, prey morphology and catch success in relation to flight mechanics in the peregrine falcon: a simulation study.

作者信息

Mills Robin, Taylor Graham K, Hemelrijk Charlotte K

机构信息

Groningen Inst. for Evolutionary Life Sciences, Univ. of Groningen, Groningen, the Netherlands.

出版信息

J Avian Biol. 2019 Mar 20;50(3). doi: 10.1111/jav.01979. eCollection 2019 Mar.

Abstract

In common with many other raptors, female peregrine falcons are about 50% heavier than males. Their sexual dimorphism is thought to allow breeding pairs to exploit a wider range of prey through a division of labor: the male being able to catch more maneuverable prey species; the female capable of carrying larger ones. Given the difficulty of assessing the catch success and load carrying capacity of both sexes of falcon in the field, we here adopt a novel approach to test the division-of-labor theory by using a detailed physics-based flight simulator of birds. We study attacks by male and female peregrines on prey species ranging from small passerines to large ducks, testing how catch success relates to the flight performance of predator and prey. Males prove to be better than females at catching highly maneuverable prey in level flight, but the catch success of both sexes improves and becomes more similar when diving, because of the higher aerodynamic forces that are available to both sexes for maneuvering in high-speed flight. The higher maximum roll acceleration of the male peregrine explains its edge over the female in catching maneuverable prey in level flight. Overall, catch success is more strongly influenced by the differences in maneuverability that exist between different species of prey than between the different sexes of falcon. On the other hand, the female can carry up to 50% greater loads than the male. More generally, our detailed simulation approach highlights the importance of several previously overlooked features of attack and escape. In particular, we find that it is not the prey's instantaneous maximum centripetal acceleration but the prey's ability to sustain a high centripetal acceleration for an extended period of time that is the primary driver of the variation in catch success across species.

摘要

与许多其他猛禽一样,雌性矛隼比雄性重约50%。它们的两性异形被认为能让繁殖对通过分工利用更广泛的猎物:雄性能够捕捉更具机动性的猎物种类;雌性则能够携带更大的猎物。鉴于在野外评估矛隼两性的捕猎成功率和负载能力存在困难,我们在此采用一种新颖的方法,通过使用基于详细物理学原理的鸟类飞行模拟器来测试分工理论。我们研究了雄性和雌性矛隼对从小型雀形目鸟类到大型鸭子等猎物种类的攻击,测试捕猎成功率与捕食者和猎物飞行性能之间的关系。事实证明,在水平飞行中捕捉高度机动的猎物时,雄性比雌性更出色,但在俯冲时,两性的捕猎成功率都会提高且变得更为相似,这是因为在高速飞行中进行机动时,两性都能获得更高的空气动力。雄性矛隼更高的最大滚转加速度解释了其在水平飞行中捕捉机动猎物方面比雌性更具优势的原因。总体而言,捕猎成功率受不同猎物种类之间机动性差异的影响,比受矛隼不同性别之间差异的影响更大。另一方面,雌性能够携带比雄性重多达50%的负载。更一般地说,我们详细的模拟方法突出了攻击和逃脱中几个先前被忽视的特征的重要性。特别是,我们发现,决定不同物种捕猎成功率差异的主要因素不是猎物的瞬时最大向心加速度,而是猎物在较长时间内维持高向心加速度的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7604/7613156/7ecf242c9d02/EMS145577-f001.jpg

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