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首页> 外文期刊>The Journal of Experimental Biology >Penguin head movement detected using small accelerometers: a proxy of prey encounter rate
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Penguin head movement detected using small accelerometers: a proxy of prey encounter rate

机译:使用小型加速度计检测到企鹅的头部移动:代表猎物遭遇率

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Determining temporal and spatial variation in feeding rates is essential for understanding the relationship between habitat features and the foraging behavior of top predators. In this study we examined the utility of head movement as a proxy of prey encounter rates in medium-sized Antarctic penguins, under the presumption that the birds should move their heads actively when they encounter and peck prey. A field study of free-ranging chinstrap and gentoo penguins was conducted at King George Island, Antarctica. Head movement was recorded using small accelerometers attached to the head, with simultaneous monitoring for prey encounter or body angle. The main prey was Antarctic krill (>99% in wet mass) for both species. Penguin head movement coincided with a slow change in body angle during dives. Active head movements were extracted using a high-pass filter (5 Hz acceleration signals) and the remaining acceleration peaks (higher than a threshold acceleration of 1.0. g) were counted. The timing of head movements coincided well with images of prey taken from the back-mounted cameras: head movement was recorded within +/- 2.5.s of a prey image on 89.1 +/- 16.1% (N=7 trips) of images. The number of head movements varied largely among dive bouts, suggesting large temporal variations in prey encounter rates. Our results show that head movement is an effective proxy of prey encounter, and we suggest that the method will be widely applicable for a variety of predators.
机译:确定进食速度的时空变化对于了解栖息地特征与顶级捕食者觅食行为之间的关系至关重要。在这项研究中,我们假设鸟类在遇到并啄食猎物时应主动移动其头部,从而考察了头部移动作为中型南极企鹅捕食率的代表的效用。在南极洲的乔治国王岛进行了自由活动的下巴带和金头企鹅的野外研究。使用连接到头部的小型加速度计记录头部的运动,同时监视猎物的遭遇或体角。这两个物种的主要猎物都是南极磷虾(湿重> 99%)。企鹅的头部运动与潜水过程中体角的缓慢变化相吻合。使用高通滤波器(5 Hz加速度信号)提取主动的头部运动,并对剩余的加速度峰值(高于1.0 g的阈值加速度)进行计数。头部运动的时机与从后置摄像头拍摄的猎物图像非常吻合:头部运动记录在猎物图像的+/- 2.5.s内,占图像的89.1 +/- 16.1%(N = 7次)。潜水动作中头部运动的数量差异很大,这表明猎物的遭遇率在时间上有很大的变化。我们的结果表明,头部运动是遇到猎物的有效代理,我们建议该方法将广泛应用于各种捕食者。

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