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Mechanics of dust bathing in birds
期刊文章

Mechanics of dust bathing in birds

Po-Lin Kuo, Guan-Yu Chen, Yu-Chia Fan, Wing-Ying Wan 和 Patricia J. Yang
Proceedings of the National Academy of Sciences - PNAS, 卷.123(12), 頁.e2521949123
24/03/2026
PMID: 41838906
Web of Science ID: WOS:001729083100001

摘要

flapping frequency eco-friendly cleaning ectoparasite removal Biological Sciences Physical Sciences

Despite the common occurrence of dust bathing in birds, the physical mechanism by which it removes ectoparasites has remained unclear. This study demonstrates that sand grains act through immediate collisions, dislodging mites at a wing-flapping frequency that scales with body mass. These findings suggest that birds have evolved to coordinate their wing motions with the mechanical effects of sand, revealing a cleaning behavior shaped by parasite pressure and contributing to our understanding of grooming evolution. Dust bathing is a widespread behavior among birds that helps remove ectoparasites, but its mechanical basis remains poorly understood. Here we show that wing flapping during dust bathing generates sand-particle collisions sufficient to dislodge feather mites. Using high-speed video analysis across 34 bird species, we found that wing-flapping frequency scales inversely with body mass (f∼M-0.20), ranging from 1 to 10 Hz. Since feather motion matches wing motion, we use mechanical shakers to simulate dust-bathing dynamics. Mite-removal experiments reveal that parasite dislodgment efficiency increases rapidly up to around 5 Hz and plateaued thereafter. The frequencies around 5 Hz are sufficient to achieve maximal cleaning efficacy. Collision modeling indicates that the impact force from sand particles exceeds mite adhesion forces, thus collision is the dominant removal mechanism. Mites are removed within seconds when sand is present, suggesting that sand plays an active mechanical role in parasite dislodgment. These findings not only elucidate a physical mechanism underlying dust bathing, but also suggest that birds may have evolutionarily tuned their flapping behavior to optimize parasite removal through substrate interaction.

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url
https://doi.org/10.1073/pnas.2521949123檢視
已出版(紀錄版本)

相關連結

InCites亮點

本研究成果之相關指標(擷取自 InCites Benchmarking & Analytics)

引用書目主題
3 Agriculture, Environment & Ecology
3.35 Zoology & Animal Ecology
3.35.2036 Avian Parasitology
Web Of Science研究領域
Parasitology
ESI研究領域
Plant & Animal Science

聯合國永續發展目標(SDGs)

此研究成果有助於達成以下目標:

#3 Good Health and Well-Being

來源:來自InCites的SDGs

詳細資料

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