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Construction of energy landscapes can clarify the movement and distribution of foraging animals

机译:能源景观的建设可以阐明觅食动物的运动和分布

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摘要

Variation in the physical characteristics of the environment should impact the movement energetics of animals. Although cognizance of this may help interpret movement ecology, determination of the landscape-dependent energy expenditure of wild animals is problematic. We used accelerometers in animal-attached tags to derive energy expenditure in 54 free-living imperial cormorants Phalacrocorax atriceps and construct an energy landscape of the area around a breeding colony. Examination of the space use of a further 74 birds over 4 years showed that foraging areas selected varied considerably in distance from the colony and water depth, but were characterized by minimal power requirements compared with other areas in the available landscape. This accords with classic optimal foraging concepts, which state that animals should maximize net energy gain by minimizing costs where possible and show how deriving energy landscapes can help understand how and why animals distribute themselves in space.
机译:环境物理特征的变化应影响动物的运动能量。尽管认识到这一点可能有助于解释运动生态学,但确定野生动物与景观有关的能量消耗是有问题的。我们在动物所附标签中使用了加速度计,以推算出54个自由活动的帝王Ph Atriceps的能量消耗,并构建了一个繁殖群体周围地区的能量景观。对4年中另外74羽鸟类进行空间利用的研究表明,选择的觅食区域与殖民地的距离和水深相差很大,但与可利用景观中的其他区域相比,其电力需求最低。这符合经典的最佳觅食概念,该概念指出动物应通过尽可能降低成本来最大程度地增加净能量,并说明获得能量的地形如何帮助理解动物如何以及为什么在太空中分布自己。

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