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- W1983647582 abstract "Previous article No AccessRisk Allocation Is a General Phenomenon: A Reply to Beauchamp and RuxtonPeter A. Bednekoff, Steven L. Lima, and Associate Editor and Editor: Mark A. McPeekPeter A. Bednekoff Search for more articles by this author , Steven L. Lima*Corresponding author; e‐mail: [email protected]. Search for more articles by this author , and Associate Editor and Editor: Mark A. McPeek Search for more articles by this author 1. Biology Department, Eastern Michigan University, Ypsilanti, Michigan 48197;2. Department of Biology, Indiana State University, Terre Haute, Indiana 47809PDFPDF PLUSFull Text Add to favoritesDownload CitationTrack CitationsPermissionsReprints Share onFacebookTwitterLinkedInRedditEmail SectionsMoreDetailsFiguresReferencesCited by The American Naturalist Volume 177, Number 1January 2011 Published for The American Society of Naturalists Article DOIhttps://doi.org/10.1086/657440 Views: 120Total views on this site Citations: 16Citations are reported from Crossref HistoryReceived May 25, 2010Accepted September 7, 2010Published online November 30, 2010 Keywordsantipredator behaviorhabituationpredation riskrisk allocationvariation in risk© 2010 by The University of Chicago.PDF download Crossref reports the following articles citing this article:Chipozya Kosta Tembo-Silungwe, Nthatisi Khatleli Development of risk misallocation causal networks using interpretive judgement in the construction industry, International Journal of Construction Management 22, no.1010 (Apr 2020): 1935–1949.https://doi.org/10.1080/15623599.2020.1744800Chipozya Kosta Tembo Silungwe, Nthatisi Khatleli An analysis of the allocation of pertinent risks in the Zambian building sector using Pareto analysis, International Journal of Construction Management 20, no.44 (Sep 2018): 321–334.https://doi.org/10.1080/15623599.2018.1484853Laia Mestre, Nijat Narimanov, Florian Menzel, Martin H. Entling, Natalie Clay Non-consumptive effects between predators depend on the foraging mode of intraguild prey, Journal of Animal Ecology 89, no.77 (Apr 2020): 1690–1700.https://doi.org/10.1111/1365-2656.13224JH Moxley, G Skomal, J Chisholm, P Halpin, DW Johnston Daily and seasonal movements of Cape Cod gray seals vary with predation risk, Marine Ecology Progress Series 644 (Jun 2020): 215–228.https://doi.org/10.3354/meps13346Etienne Sirot Adjustments in compound defensive strategies in response to variation in predation risk, Animal Behaviour 147 (Jan 2019): 53–60.https://doi.org/10.1016/j.anbehav.2018.10.023Chipozya Kosta Tembo-Silungwe, Nthatisi Khatleli Identification of Enablers and Constraints of Risk Allocation Using Structuration Theory in the Construction Industry, Journal of Construction Engineering and Management 144, no.55 (May 2018).https://doi.org/10.1061/(ASCE)CO.1943-7862.0001471József Garay, Villő Csiszár, Tamás F. Móri Survival phenotype, selfish individual versus Darwinian phenotype, Journal of Theoretical Biology 430 (Oct 2017): 86–91.https://doi.org/10.1016/j.jtbi.2017.06.031Barney Luttbeg Re-examining the Causes and Meaning of the Risk Allocation Hypothesis, The American Naturalist 189, no.66 (Mar 2017): 644–656.https://doi.org/10.1086/691470Allison E. Bannister, Douglas W. Morris Habitat selection reveals state-dependent foraging trade-offs in a temporally autocorrelated environment, Israel Journal of Ecology & Evolution 62, no.3-43-4 (Aug 2016): 162–170.https://doi.org/10.1080/15659801.2015.1065680Catherine M. Matassa, Geoffrey C. Trussell Prey state shapes the effects of temporal variation in predation risk, Proceedings of the Royal Society B: Biological Sciences 281, no.17961796 (Dec 2014): 20141952.https://doi.org/10.1098/rspb.2014.1952Tim W. Fawcett, Benja Fallenstein, Andrew D. Higginson, Alasdair I. Houston, Dave E.W. Mallpress, Pete C. Trimmer, John M. McNamara The evolution of decision rules in complex environments, Trends in Cognitive Sciences 18, no.33 (Mar 2014): 153–161.https://doi.org/10.1016/j.tics.2013.12.012John L. Orrock, Gustavo Bonaventure Exposure of Unwounded Plants to Chemical Cues Associated with Herbivores Leads to Exposure-Dependent Changes in Subsequent Herbivore Attack, PLoS ONE 8, no.1111 (Nov 2013): e79900.https://doi.org/10.1371/journal.pone.0079900R. J. Masse, B. C. Tefft, J. A. Amador, S. R. McWilliams Why woodcock commute: testing the foraging-benefit and predation-risk hypotheses, Behavioral Ecology 24, no.66 (Aug 2013): 1348–1355.https://doi.org/10.1093/beheco/art073Andrew D. Higginson, Tim W. Fawcett, Pete C. Trimmer, John M. McNamara, and Alasdair I. Houston Generalized Optimal Risk Allocation: Foraging and Antipredator Behavior in a Fluctuating Environment., The American Naturalist 180, no.55 (Jul 2015): 589–603.https://doi.org/10.1086/667885Robert L. Thomson, Jukka T. Forsman, Mikko Mönkkönen Risk taking in natural predation risk gradients: support for risk allocation from breeding pied flycatchers, Animal Behaviour 82, no.66 (Dec 2011): 1443–1447.https://doi.org/10.1016/j.anbehav.2011.09.029Geoffrey C Trussell, Catherine M Matassa, Barney Luttbeg The effects of variable predation risk on foraging and growth: Less risk is not necessarily better, Ecology 92, no.99 (Sep 2011): 1799–1806.https://doi.org/10.1890/10-2222.1" @default.
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