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Pointed Wings Low Wingloading and Calm Air Reduce Migratory Flight Costs in Songbirds

机译:尖翼低翼负载和安静的空气减少了鸣禽的迁徙飞行成本

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摘要

Migratory bird, bat and insect species tend to have more pointed wings than non-migrants. Pointed wings and low wingloading, or body mass divided by wing area, are thought to reduce energy consumption during long-distance flight, but these hypotheses have never been directly tested. Furthermore, it is not clear how the atmospheric conditions migrants encounter while aloft affect their energy use; without such information, we cannot accurately predict migratory species' response(s) to climate change. Here, we measured the heart rates of 15 free-flying Swainson's Thrushes (Catharus ustulatus) during migratory flight. Heart rate, and therefore rate of energy expenditure, was positively associated with individual variation in wingtip roundedness and wingloading throughout the flights. During the cruise phase of the flights, heart rate was also positively associated with wind speed but not wind direction, and negatively but not significantly associated with large-scale atmospheric stability. High winds and low atmospheric stability are both indicative of the presence of turbulent eddies, suggesting that birds may be using more energy when atmospheric turbulence is high. We therefore suggest that pointed wingtips, low wingloading and avoidance of high winds and turbulence reduce flight costs for small birds during migration, and that climate change may have the strongest effects on migrants' in-flight energy use if it affects the frequency and/or severity of high winds and atmospheric instability.
机译:与非移民相比,候鸟,蝙蝠和昆虫的翅膀往往更尖。尖头机翼和低机翼负荷或体重除以机翼面积被认为可以减少长途飞行时的能量消耗,但这些假设从未得到直接检验。此外,尚不清楚移民在高空时遇到的大气条件如何影响他们的能源利用;没有这些信息,我们就无法准确预测迁徙物种对气候变化的反应。在这里,我们测量了15只自由移动的Swainson鹅口疮(Catharus ustulatus)在迁徙期间的心率。在整个飞行过程中,心率以及相应的能量消耗率与翼尖圆度和翼负载的个体变化呈正相关。在飞行的巡航阶段,心率也与风速成正相关,而与风向无关,而与大范围大气稳定性成负相关,但不明显。高风和低大气稳定性都表明存在涡流,这表明当大气湍流很高时,鸟类可能会消耗更多的能量。因此,我们建议,尖的翼尖,低的机翼负荷以及避免强风和湍流会降低小鸟在迁徙过程中的飞行成本,并且如果气候变化影响频次和/或频率,则气候变化可能会对迁徙者的飞行中能源使用产生最大的影响大风和大气不稳定的严重性。

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