Lameris, T.K.; Bijleveld, A.; Bom, R.A.; Karagicheva, J.; Kressin, H.; Kok, E.M.A.; Lagerveld, S.; de Monte, L.; Helm, B.; Piersma, T. (2025). Experimentally increased food availability allows for earlier departure in a long‐distance migratory shorebird. Funct. Ecol. 39(12): 3434-3445. https://dx.doi.org/10.1111/1365-2435.70183, more
Weiser, E.L.; Lanctot, R.B.; Ruthrauff, D.R.; Saalfeld, S.T.; Tibbitts, T.L.; Abad‐Gómez, J.M.; Aldabe, J.; de Almeida, J.B.; Alves, J.A.; Anderson, G.Q.A.; Battley, P.F.; Belting, H.; Bêty, J.; Bianchini, K.; Bishop, M.A.; Bom, R.A.; Bowgen, K.; Brown, G.S.; Brown, S.C.; Bugoni, L.; Burton, N.H.K.; Bybee, D.R.; Carneiro, C.; Castresana, G.; Chan, Y.‐C.; Choi, C.‐Y.; Christie, K.S.; Clark, N.A.; Conklin, J.R.; Cruz‐López, M.; Dinsmore, S.J.; Dodd, S.G.; Douglas, D.C.; Eberhart‐Hertel, L.J.; English, W.B.; Ewing, H.T.; Faria, F.A.; Franks, S.E.; Fuller, R.A.; Gill, R.E.; Giroux, M.‐A.; Gratto‐Trevor, C.L.; Green, D.J.; Green, R.E.; Green, R.M.W.; Gunnarsson, T.G.; Gutiérrez, J.S.; Harrison, A.‐L.; Hartman, C.A.; Hassell, C.J.; Hoepfner, S.A.; Hooijmeijer, J.C.E.W.; Johnson, J.A.; Johnson, O.W.; Kempenaers, B.; Klaassen, M.; Kok, E.M.A.; Krietsch, J.; Küpper, C.; Kwarteng, A.Y.; Kwon, E.; Lamarre, J.‐F.; Latty, C.J.; Lecomte, N.; Loonstra, A.H.J.; Ma, Z.; Mander, L.; Marlow, C.; Marra, P.P.; Masero, J.A.; McDuffie, L.A.; McGuire, R.L.; Melter, J.; Melville, D.S.; Méndez, V.; Michels, T.J.; Morrissey, C.A.; Mu, T.; Newstead, D.J.; Page, G.W.; Pierce, A.K.; Piersma, T.; Repenning, M.; Robinson, B.H.; Rocha, A.D.; Rogers, D.I.; Scarpignato, A.L.; Schulte, S.; Scragg, E.S.; Senner, N.R.; Smith, P.A.; Taylor, A.R.; Taylor, R.C.; Þórisson, B.; Valcu, M.; Verhoeven, M.A.; Ware, L.; Warnock, N.; Weber, M.F.; Wright, L.J.; Wunder, M.B. (2025). Power source, data retrieval method, and attachment type affect success of dorsally mounted tracking tag deployments in 37 species of shorebirds. J. Avian Biol. 2025(6): e03487. https://dx.doi.org/10.1002/jav.03487, more
Nuijten, R.J.M.; Katzner, T.E.; Allen, A.M.; Bijleveld, A.I.; Boorsma, T.; Börger, L.; Cagnacci, F.; Hart, T.; Henley, M.A.; Herren, R.M.; Kok, E.M.A.; Maree, B.; Nebe, B.; Shohami, D.; Vogel, S.M.; Walker, P.; Heitkönig, I.M.A.; Milner-Gulland, E.J. (2023). Priorities for translating goodwill between movement ecologists and conservation practitioners into effective collaboration. Conservation Science and Practice 5(1): e12870. https://dx.doi.org/10.1111/csp2.12870, more
Piersma, T.; Kok, E.M.A.; Hassell, C.J.; Peng, H.-B.; Verkuil, Y.I.; Lei, G.; Karagicheva, J.; Rakhimberdiev, E.N.; Howey, P.W.; Tibbitts, T.L.; Chan, Y.-C (2021). When a typical jumper skips: itineraries and staging habitats used by Red Knots (Calidris canutus piersmai) migrating between northwest Australia and the New Siberian Islands. Ibis 163(4): 1235-1251. https://doi.org/10.1111/ibi.12964, more
Kok, E.M.A.; Tibbitts, T.L; Douglas, D.C.; Howey, P.W.; Dekinga, A.; Gnep, B.; Piersma, T. (2020). A red knot as a black swan: how a single bird shows navigational abilities during repeat crossings of the Greenland Icecap. J. Avian Biol. 51(8). https://dx.doi.org/10.1111/jav.02464, more
Kok, E.M.A.; Hogan, J.A.; Piersma, T. (2020). Experimental tests of a seasonally changing visual preference for habitat in a long‐distance migratory shorebird. Ethology 126(7): 681-693. https://dx.doi.org/10.1111/eth.13036, more
Mathot, K.J.; Kok, E.M.A.; van den Hout, P.J.; Dekinga, A.; Piersma, T. (2020). Red knots (Calidris canutus islandica) manage body mass with dieting and activity. J. Exp. Biol. 223(21): jeb231993. https://doi.org/10.1242/jeb.231993, more
Kok, E.M.A.; Burant, J.B.; Dekinga, A.; Manche, P.; Saintonge, D.; Piersma, T.; Mathot, K.J. (2019). Within-individual canalization contributes to age-related increases in trait repeatability: a longitudinal experiment in red knots. American Naturalist 194(4). https://dx.doi.org/10.1086/704593, more
Mathot, K.J.; Kok, E.M.A.; Burant, J.B.; Dekinga, A.; Manche, P.; Saintonge, D.; Piersma, T. (2019). Evolutionary design of a flexible, seasonally migratory, avian phenotype: why trade gizzard mass against pectoral muscle mass? Proc. - Royal Soc., Biol. Sci. 286(1903): 20190518. https://dx.doi.org/10.1098/rspb.2019.0518, more
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