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候鸟的最佳燃料负荷:区分时间和能量最小化

Optimum fuel loads in migratory birds: distinguishing between time and energy minimization.

作者信息

Hedenstrom A, Alerstam T

机构信息

Department of Animal Ecology, Lund University, Ecology Building, Lund, S-223 62, Sweden.

出版信息

J Theor Biol. 1997 Dec 7;189(3):227-34. doi: 10.1006/jtbi.1997.0505.

DOI:10.1006/jtbi.1997.0505
PMID:9441816
Abstract

By combining the potential flight range of fuel with different migration policies, the optimum departure fuel load for migratory birds can be calculated. We evaluate the optimum departure fuel loads associated with minimization of three different currencies: (1) overall time of migration, (2) energy cost of transport and (3) total energy coast of migration. Predicted departure loads are highest for (1), lowest for (2) and intermediate for (3). Further, currencies (1) and (3) show departure loads dependent on the fuel accumulation rate at stopovers, while (2) is not affected by variation in the rate of fuel accumulation. Furthermore, fuel loads optimized with respect to currency (3) will differ depending on the size (body mass) of the bird and the energy density of the fuel. We review ecological situations in which the various currencies may apply, and suggest how a combination of stopover decisions and observations of flight speed may be used to decide among the three cases of migration policies. Finally, we calculate that the total energy cost of migration is roughly divided between flight and stopover as 1:2. The total time of migration is similarly divided between flight and stopover as 1:7, probably with a relatively longer stopover time in larger species. Hence, we may expect strong selection pressures to optimize the fuel accumulation strategies during stopover episodes.Copyright 1997 Academic Press Limited Copyright 1997 Academic Press Limited

摘要

通过将不同迁徙策略下燃料的潜在飞行范围相结合,可以计算出候鸟的最佳出发燃料负载量。我们评估了与三种不同指标最小化相关的最佳出发燃料负载量:(1)总体迁徙时间;(2)运输能量成本;(3)总迁徙能量消耗。预测的出发负载量对于(1)最高,对于(2)最低,对于(3)处于中间水平。此外,指标(1)和(3)显示出发负载量取决于中途停歇地的燃料积累速率,而(2)不受燃料积累速率变化的影响。此外,针对指标(3)优化的燃料负载量会因鸟类的体型(体重)和燃料的能量密度而有所不同。我们回顾了各种指标可能适用的生态情况,并建议如何结合中途停歇决策和飞行速度观测来在三种迁徙策略情况中做出抉择。最后,我们计算出迁徙的总能量消耗在飞行和停歇之间大致按1:2分配。迁徙的总时间在飞行和停歇之间同样按1:7分配,可能体型较大的物种停歇时间相对更长。因此,我们可以预期在中途停歇期间会有强大的选择压力来优化燃料积累策略。版权所有1997学术出版社有限公司 版权所有1997学术出版社有限公司

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