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飞机追踪记录了蝙蝠的最快飞行速度。

Airplane tracking documents the fastest flight speeds recorded for bats.

作者信息

McCracken Gary F, Safi Kamran, Kunz Thomas H, Dechmann Dina K N, Swartz Sharon M, Wikelski Martin

机构信息

Ecology and Evolutionary Biology , University of Tennessee , Knoxville, TN , USA.

Max Planck Institute for Ornithology, Radolfzell, Germany; Biology, University of Konstanz, Konstanz, Germany.

出版信息

R Soc Open Sci. 2016 Nov 9;3(11):160398. doi: 10.1098/rsos.160398. eCollection 2016 Nov.

Abstract

The performance capabilities of flying animals reflect the interplay of biomechanical and physiological constraints and evolutionary innovation. Of the two extant groups of vertebrates that are capable of powered flight, birds are thought to fly more efficiently and faster than bats. However, fast-flying bat species that are adapted for flight in open airspace are similar in wing shape and appear to be similar in flight dynamics to fast-flying birds that exploit the same aerial niche. Here, we investigate flight behaviour in seven free-flying Brazilian free-tailed bats () and report that the maximum ground speeds achieved exceed speeds previously documented for any bat. Regional wind modelling indicates that bats adjusted flight speeds in response to winds by flying more slowly as wind support increased and flying faster when confronted with crosswinds, as demonstrated for insects, birds and other bats. Increased frequency of pauses in wing beats at faster speeds suggests that flap-gliding assists the bats' rapid flight. Our results suggest that flight performance in bats has been underappreciated and that functional differences in the flight abilities of birds and bats require re-evaluation.

摘要

飞行生物的性能体现了生物力学、生理限制以及进化创新之间的相互作用。在现存的两类能够进行动力飞行的脊椎动物中,鸟类被认为比蝙蝠飞行得更高效、更快。然而,适应在开阔空域飞行的快速飞行蝙蝠物种,其翅膀形状与利用相同空中生态位的快速飞行鸟类相似,飞行动力学也似乎相似。在此,我们研究了七种自由飞行的巴西无尾蝠的飞行行为,并报告称它们达到的最大地面速度超过了此前记录的任何蝙蝠的速度。区域风模型表明,蝙蝠会根据风向调整飞行速度,随着风的助力增加而飞得更慢,遇到侧风时飞得更快,昆虫、鸟类和其他蝙蝠也有类似表现。在更快速度下翅膀拍动暂停频率增加,这表明扑翼滑翔有助于蝙蝠快速飞行。我们的结果表明,蝙蝠的飞行性能一直未得到充分认识,鸟类和蝙蝠飞行能力的功能差异需要重新评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a880/5180116/83429899d973/rsos160398-g1.jpg

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