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- W2800811151 endingPage "1064" @default.
- W2800811151 startingPage "1055" @default.
- W2800811151 abstract "Abstract The migratory patterns of birds have been the focus of ecologists for millennia. What behavioural traits underlie these remarkably consistent movements? Addressing this question is central to advancing our understanding of migratory flight strategies and requires the integration of information across levels of biological organisation, e.g. species to communities. Here, we combine species‐specific observations from the eB ird citizen‐science database with observations aggregated from weather surveillance radars during spring migration in central North America. Our results confirm a core prediction of migration theory at an unprecedented national scale: body mass predicts variation in flight strategies across latitudes, with larger‐bodied species flying faster and compensating more for wind drift. We also find evidence that migrants travelling northward earlier in the spring increasingly compensate for wind drift at higher latitudes. This integration of information across biological scales provides new insight into patterns and determinants of broad‐scale flight strategies of migratory birds." @default.
- W2800811151 created "2018-05-17" @default.
- W2800811151 creator A5010050575 @default.
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- W2800811151 creator A5048513097 @default.
- W2800811151 creator A5061155671 @default.
- W2800811151 creator A5069370648 @default.
- W2800811151 date "2018-05-07" @default.
- W2800811151 modified "2023-10-14" @default.
- W2800811151 title "Navigating north: how body mass and winds shape avian flight behaviours across a North American migratory flyway" @default.
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- W2800811151 doi "https://doi.org/10.1111/ele.12971" @default.
- W2800811151 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29736919" @default.