首页> 外文期刊>The Journal of Experimental Biology >Ascending flight and decelerating vertical glides in Anna's hummingbirds
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Ascending flight and decelerating vertical glides in Anna's hummingbirds

机译:上升的飞行和安娜蜂鸟的垂直滑动

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摘要

Hummingbirds are observationally well known for their capacity to vertically ascend whilst hovering, but the underlying mechanics and possible energetic limits to ascent rates are unclear. Decelerations during vertical ascent to a fixed target may also be associated with specific visual responses to regulate the body's trajectory. Here, we studied climbing flight and subsequent deceleration in male Anna's hummingbirds (Calypte anna) over an approximately 2 m vertical distance. Birds reached vertical speeds and accelerations up to similar to 4 m s(-1) and 10 m s(-2), respectively, through the use of flapping frequencies as high as 56 Hz and stroke amplitudes slightly greater than 180 deg. Total mass-specific power at maximal ascent speed was up to 92 W kg(-1) body mass. Near the end of the ascending trajectory, all individuals decelerated ballistically via cessation of flapping and folding of wings over the body without losing control, a behavior termed here a vertical glide. Visual modulation of the deceleration trajectory during ascent was indicated by a constant value (similar to 0.75) for the first derivative of the time-to-contact to target. Our results indicate that hummingbirds in rapid vertical ascent expended near-maximal power output during flight, but also tightly controlled their subsequent deceleration during the vertical glide.
机译:蜂鸟是观察性众所周知的能力,垂直上升,而徘徊,但底层机制和可能的活力限制上升速度也不清楚。垂直上升到一个固定的目标减速度期间,还可以与特定的视觉响应以调节体内的轨迹相关联。在这里,我们研究了攀登雄性安娜的蜂鸟(卡里普特安娜)飞行和随后的减速比的大约2米的垂直距离。鸟类达到垂直速度和加速度达到相似到4m秒(-1)和10米每秒(-2),分别通过使用扑频率高达56个赫兹和行程幅度大于180度稍大。在最大上升速度总质量特定功率为高达92 w ^公斤(-1)体重。附近的上升轨迹的结束,所有个人通过翩翩而不失控制权,身体翅膀折叠停止弹道减速,行为这里称为垂直滑行。上升过程中的减速轨迹的视觉调制由恒定值(类似0.75)为的时间 - 接触目标一阶导数来表示。我们的研究结果表明,在快速垂直上升蜂鸟的飞行过程中所消耗接近最大功率输出,但垂直滑行过程中也严格控制其随后的减速。

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