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结合无线电遥测和雷达测量来测试一种食虫鸟类的最佳觅食行为。

Combining radio-telemetry and radar measurements to test optimal foraging in an aerial insectivore bird.

作者信息

Bloch Itai, Troupin David, Toledo Sivan, Nathan Ran, Sapir Nir

机构信息

Department of Evolutionary and Environmental Biology and Institute of Evolution, University of Haifa, Haifa, Israel.

Blavatnik School of Computer Science, Tel-Aviv University, Tel Aviv, Israel.

出版信息

Elife. 2025 Jan 27;13:RP96573. doi: 10.7554/eLife.96573.

Abstract

Optimal foraging theory posits that foragers adjust their movements based on prey abundance to optimize food intake. While extensively studied in terrestrial and marine environments, aerial foraging has remained relatively unexplored due to technological limitations. This study, uniquely combining BirdScan-MR1 radar and the Advanced Tracking and Localization of Animals in Real-Life Systems biotelemetry system, investigates the foraging dynamics of Little Swifts () in response to insect movements over Israel's Hula Valley. Insect movement traffic rate (MoTR) substantially varied across days, strongly influencing swift movement. On days with high MoTR, swifts exhibited reduced flight distance, increased colony visit rate, and earlier arrivals at the breeding colony, reflecting a dynamic response to prey availability. However, no significant effects were observed in total foraging duration, flight speed, or daily route length. Notably, as insect abundance increased, inter-individual distances decreased. These findings suggest that Little Swifts optimize their foraging behavior in relation to aerial insect abundance, likely influencing reproductive success and population dynamics. The integration of radar technology and biotelemetry systems provides a unique perspective on the interactions between aerial insectivores and their prey, contributing to a comprehensive understanding of optimal foraging strategies in diverse environments.

摘要

最优觅食理论认为,觅食者会根据猎物的丰富程度调整其行动,以优化食物摄入量。虽然在陆地和海洋环境中已得到广泛研究,但由于技术限制,空中觅食相对而言仍未得到充分探索。本研究将BirdScan - MR1雷达与“现实生活系统中动物的高级跟踪与定位”生物遥测系统独特地结合起来,调查了小白腰雨燕()在以色列胡拉谷上空针对昆虫活动的觅食动态。昆虫移动交通率(MoTR)在不同日期有很大差异,对雨燕的移动有强烈影响。在MoTR较高的日子里,雨燕的飞行距离缩短、回巢率增加且更早返回繁殖巢,这反映出对猎物可获得性的动态响应。然而,在总觅食持续时间、飞行速度或每日路线长度方面未观察到显著影响。值得注意的是,随着昆虫数量增加,个体间距离减小。这些发现表明,小白腰雨燕会根据空中昆虫的丰富程度优化其觅食行为,这可能会影响繁殖成功率和种群动态。雷达技术与生物遥测系统的整合为空中食虫动物与其猎物之间的相互作用提供了独特视角,有助于全面理解不同环境中的最优觅食策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be72/11771959/e4d95007f536/elife-96573-fig1.jpg

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