Beauchamp G (1998) The effects of group size on mean food intake rate in birds. Biol Rev 73:449–472
Article
Google Scholar
Bürkner PC (2017) brms: an R package for Bayesian multilevel models using Stan. J Stat Softw 80:1–28
Article
Google Scholar
Caro TM (2005) Antipredator defenses in birds and mammals. University of Chicago Press, Chicago
Google Scholar
Cordero P, Senar J (1990) Interspecific nest defence in European sparrows: different strategies to deal with a different species of opponent? Ornis Scand 21:71–73
Article
Google Scholar
Devereux CL, Whittingham MJ, Fernandez-Juricic E, Vickery JA, Krebs JR (2006) Predator detection and avoidance by starlings under differing scenarios of predation risk. Behav Ecol 17:303–309
Article
Google Scholar
Elgar MA (1989) Predator vigilance and group size in mammals and birds. Biol Rev 64:13–33
CAS
Article
Google Scholar
Farine DR, Aplin LM, Sheldon BC, Hoppitt W (2015) Inter-specific social networks promote information transmission in wild song-birds. Proc R Soc Lond B 282:20142804
Google Scholar
Fernandez-Juricic E, Smith R, Kacelnik A (2005) Increasing the costs of conspecific scanning in socially foraging starlings affects vigilance and foraging behaviour. Anim Behav 69:73–81
Article
Google Scholar
Higginson AD, Fawcett TW, Trimmer PC, McNamara JM, Houston AI (2012) Generalized optimal risk allocation: foraging and antipredator behavior in a fluctuating environment. Am Nat 180:589–603
Article
Google Scholar
Hillemann F, Cole EF, Sheldon BC, Farine DR (2020) Information use in foraging flocks of songbirds-no evidence for social transmission of patch quality. Anim Behav 165:35–41
Article
Google Scholar
Houston AI, McNamara JM, Hutchinson JMC (1993) General results concerning the trade-off between gaining energy and avoiding predation. Phil Trans R Soc Lond B 341:375–397
Article
Google Scholar
Huang P, Seiving KE, St Mary CM (2012) Heterospecific information about predation risk influences exploratory behavior. Behav Ecol 23:463–472
Article
Google Scholar
Krause J, Ruxton GD (2002) Living in groups. Oxford University Press, New York
Google Scholar
Kurvers RHJM, Van Oers K, Nolet BA, Jonker RM, Van Wieren SE, Prins HHT, Ydenberg RC (2010) Personality predicts the use of social information. Ecol Lett 13:829–837
Article
Google Scholar
Lemoine NP (2019) Moving beyond noninformative priors: why and how to choose weakly 2 informative priors in Bayesian analyses. Oikos. https://doi.org/10.1111/oik.05985
Article
Google Scholar
Liker A, Barta Z (2002) The effects of dominance on social foraging tactic use in house sparrows. Behaviour 139:1061–1076
Article
Google Scholar
Liker A, Bókony V, Kulcsár A, Tóth Z, Szabó K, Kaholek B, Pénzes Z (2009) Genetic relatedness in wintering groups of house sparrows (Passer domesticus). Mol Ecol 18:4696–4706
CAS
Article
Google Scholar
Makowski D, Ben-Shachar M, Lüdecke D (2019) bayestestR: describing effects and their uncertainty, existence and significance within the Bayesian framework. J Open Source Softw 4:1541
Article
Google Scholar
Mathot KJ, Van den Hout PJ, Piersma T (2009) Differential responses of red knots, Calidris canutus, to perching and flying sparrowhawk, Accipiter nisus, models. Anim Behav 77:1179–1185
Article
Google Scholar
Matyjasiak P (2005) Birds associate species-specific acoustic and visual cues: recognition of heterospecific rivals by male blackcaps. Behav Ecol 16:467–471
Article
Google Scholar
Plummer M, Best N, Cowles C, Vines K (2006) CODA: convergence diagnosis and output analysis for MCMC. R News 6:7–11
Google Scholar
R Core Team (2020) R: a language and environment for statistical computing, R Foundation for Statistical Computing, Vienna, Austria. https://www.R-project.org/. Accessed 19 Feb 2021
Roth TC, Cox JG, Lima SL (2008) The use and sharing of information about predation risk by flocks of wintering finches. Ethology 114:1218–1226
Article
Google Scholar
Samplonius JM, Kromhout Van Der Meer IM, Both C (2017) Nest site preference depends on the relative density of conspecifics and heterospecifics in wild birds. Front Zool 14:56
Article
Google Scholar
Seppänen JT, Forsman JT, Monkkonen M, Thomson RL (2007) Social information use is a process across time, space, and ecology, reaching heterospecifics. Ecology 88:1622–1633
Article
Google Scholar
Tóth Z, Bókony V, Lendvai ÁZ, Szabó K, Pénzes Z, Liker A (2009) Effects of relatedness on social-foraging tactic use in house sparrows. Anim Behav 77:337–342
Article
Google Scholar
Trnka A, Grim T (2014) Dynamic risk assessment: does a nearby breeding nest predator affect nest defence of its potential victim? J Ethol 32:103–110
Article
Google Scholar
Trnka A, Trnka M, Grim T (2015) Do rufous common cuckoo females indeed mimic a predator? An experimental test. Biol J Linn Soc 116:134–143
Article
Google Scholar
Tryjanowski P, Morelli F, Kwieciński Z, Indykiewicz P, Møller AP (2018a) Birds respond similarly to taxidermic models and live cuckoos Cuculus canorus. J Ethol 36:243–249
Article
Google Scholar
Tryjanowski P, Skorka P, Møller AP (2018b) Intra- and interspecific abundance of birds affects detection of novel food sources by great tits Parus major. Acta Ornithol 52:221–231
Article
Google Scholar
Tvardíková K, Fuchs R (2012) Tits recognize the potential dangers of predators and harmless birds in feeder experiments. J Ethol 30:157–165
Article
Google Scholar
Vehtari A, Gelman A, Gabry J (2017) Practical Bayesian model evaluation using leave-one-out cross-validation and WAIC. Stat Comput 27:1413–1432
Article
Google Scholar