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家燕的羽孔与飞行性能

Feather holes and flight performance in the barn swallow .

作者信息

Matyjasiak Piotr, Boniecki Paweł, Fuszara Maciej, Okołowski Mateusz, Olejniczak Izabela

机构信息

Faculty of Biology and Environmental Sciences, Cardinal Stefan Wyszyński University in Warsaw, Warsaw, Poland.

Faculty of Christian Philisophy, Cardinal Stefan Wyszyński University in Warsaw, Warsaw, Poland.

出版信息

Anim Cells Syst (Seoul). 2018 Mar 25;22(2):124-131. doi: 10.1080/19768354.2018.1452294. eCollection 2018.

Abstract

Feather holes are small (0.5-1 mm in diameter) deformities that appear on the vanes of flight feathers. Such deformities were found in many bird species, including galliforms and passerines. Holey flight feathers may be more permeable to air, which could have a negative effect on their ability to generate aerodynamic forces. However, to date the effects of feather holes on flight performance in birds remained unclear. In this study we investigated the relationship between the number of feather holes occurring in the wing or tail feathers and short term flight performance traits - aerial manoeuvrability, maximum velocity and maximum acceleration - in barns swallows, which are long distance migrating aerial foragers. We measured short-term flight performance of barn swallows in a standardized manner in flight tunnels. We found that acceleration and velocity were significantly negatively associated with the number of holes in the wing flight feathers, but not with those in the tail feathers. In the case of acceleration the negative relationship was sex specific - while acceleration significantly decreased with the number of feather holes in females, there was no such significant association in males. Manoeuvrability was not significantly associated with the number of feather holes. These results are consistent with the hypothesis that feather holes are costly in terms of impaired flight. We discuss alternative scenarios that could explain the observed relationships. We also suggest directions for future studies that could investigate the exact mechanism behind the negative association between the number of feather holes and flight characteristics.

摘要

羽孔是出现在飞羽羽片上的小畸形(直径0.5 - 1毫米)。在包括鸡形目和雀形目在内的许多鸟类中都发现了这种畸形。有孔的飞羽可能对空气更具渗透性,这可能会对其产生空气动力的能力产生负面影响。然而,迄今为止,羽孔对鸟类飞行性能的影响仍不清楚。在本研究中,我们调查了家燕(一种长距离迁徙的空中觅食者)翅膀或尾羽上出现的羽孔数量与短期飞行性能特征——空中机动性、最大速度和最大加速度之间的关系。我们在飞行隧道中以标准化方式测量了家燕的短期飞行性能。我们发现加速度和速度与翅膀飞羽上的羽孔数量显著负相关,但与尾羽上的羽孔数量无关。就加速度而言,这种负相关具有性别特异性——虽然雌性的加速度随着羽孔数量的增加而显著降低,但雄性中没有这种显著关联。机动性与羽孔数量没有显著关联。这些结果与羽孔在飞行受损方面代价高昂的假设一致。我们讨论了可以解释观察到的关系的其他情况。我们还提出了未来研究的方向,这些研究可以调查羽孔数量与飞行特征之间负相关背后的确切机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a707/6138321/7a54a12fe66a/TACS_A_1452294_F0001_C.jpg

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