Artigo Revisado por pares

Convergence of Group Size Strategies by Mammalian Social Carnivores

1978; University of Chicago Press; Volume: 112; Issue: 987 Linguagem: Inglês

10.1086/283336

ISSN

1537-5323

Autores

Thomas D. Nudds,

Tópico(s)

Evolutionary Game Theory and Cooperation

Resumo

Previous articleNext article No AccessLetters to the EditorsConvergence of Group Size Strategies by Mammalian Social CarnivoresThomas D. NuddsThomas D. Nudds Search for more articles by this author PDFPDF PLUS Add to favoritesDownload CitationTrack CitationsPermissionsReprints Share onFacebookTwitterLinkedInRedditEmail SectionsMoreDetailsFiguresReferencesCited by The American Naturalist Volume 112, Number 987Sep. - Oct., 1978 Published for The American Society of Naturalists Article DOIhttps://doi.org/10.1086/283336 Views: 32Total views on this site Citations: 48Citations are reported from Crossref Copyright 1978 The University of ChicagoPDF download Crossref reports the following articles citing this article:Bapin Mondal, Subarna Roy, Uttam Ghosh, Pankaj Kumar Tiwari A systematic study of autonomous and nonautonomous predator–prey models for the combined effects of fear, refuge, cooperation and harvesting, The European Physical Journal Plus 137, no.66 (Jun 2022).https://doi.org/10.1140/epjp/s13360-022-02915-0Nazmul Sk, Pankaj Kumar Tiwari, Samares Pal A delay nonautonomous model for the impacts of fear and refuge in a three species food chain model with hunting cooperation, Mathematics and Computers in Simulation 192 (Feb 2022): 136–166.https://doi.org/10.1016/j.matcom.2021.08.018Miki Ben‐Dor, Raphael Sirtoli, Ran Barkai The evolution of the human trophic level during the Pleistocene, American Journal of Physical Anthropology 175, no.S72S72 (Mar 2021): 27–56.https://doi.org/10.1002/ajpa.24247Lena Grinsted, Mads F. 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Reisinger, Charlene Beukes (née Janse van Rensburg), A. Rus Hoelzel, P.J. Nico de Bruyn Kinship and association in a highly social apex predator population, killer whales at Marion Island, Behavioral Ecology 28, no.33 (Mar 2017): 750–759.https://doi.org/10.1093/beheco/arx034Rebekka Volmer, Christine Hertler, Alexandra van der Geer Niche overlap and competition potential among tigers ( Panthera tigris ), sabertoothed cats ( Homotherium ultimum , Hemimachairodus zwierzyckii ) and Merriam's Dog ( Megacyon merriami ) in the Pleistocene of Java, Palaeogeography, Palaeoclimatology, Palaeoecology 441 (Jan 2016): 901–911.https://doi.org/10.1016/j.palaeo.2015.10.039Paul Schuette, Aaron P. Wagner, Meredith E. Wagner, Scott Creel Occupancy patterns and niche partitioning within a diverse carnivore community exposed to anthropogenic pressures, Biological Conservation 158 (Feb 2013): 301–312.https://doi.org/10.1016/j.biocon.2012.08.008Michael P. Moore, Charles R. Burt, Thomas D. Whitney, Steven A. Hastings, Gary C. Chang Does Social Feeding Improve Larval Survival of the Two-Spotted Lady Beetle, Adalia bipunctata ?, Journal of Insect Science 12, no.101101 (Aug 2012): 1–12.https://doi.org/10.1673/031.012.10101Jennifer Guevara, Leticia Avilés Influence of body size and level of cooperation on the prey capture efficiency of two sympatric social spiders exhibiting an included niche pattern, Functional Ecology 25, no.44 (Apr 2011): 859–867.https://doi.org/10.1111/j.1365-2435.2011.01843.xJennifer Guevara, Marcelo O. Gonzaga, João Vasconcellos-Neto, Leticia Avilés Sociality and resource use: insights from a community of social spiders in Brazil, Behavioral Ecology 22, no.33 (Mar 2011): 630–638.https://doi.org/10.1093/beheco/arr022Marco Campenní, Federico Cecconi Quasi-PSO Algorithm for Modeling Foraging Dynamics in Social Mammals, International Journal of Agent Technologies and Systems 3, no.11 (Jan 2011): 27–38.https://doi.org/10.4018/jats.2011010103Jan Komdeur, Jan Ekman Adaptations and constraints in the evolution of delayed dispersal: implications for cooperation, (Nov 2010): 306–327.https://doi.org/10.1017/CBO9780511781360.025Matthijs van Veelen, Julián García, Leticia Avilés It takes grouping and cooperation to get sociality, Journal of Theoretical Biology 264, no.44 (Jun 2010): 1240–1253.https://doi.org/10.1016/j.jtbi.2010.02.043 Gregory S. A. Rasmussen , Markus Gusset , Franck Courchamp , and David W. 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Daniels, Marc Bekoff Spatial and Temporal Resource Use by Feral and Abandoned Dogs, Ethology 81, no.44 (Apr 2010): 300–312.https://doi.org/10.1111/j.1439-0310.1989.tb00776.xJohn L. Gittleman Carnivore Group Living: Comparative Trends, (Jan 1989): 183–207.https://doi.org/10.1007/978-1-4757-4716-4_8Luc-Alain Giraldeau THE STABLE GROUP AND THE DETERMINANTS OF FORAGING GROUP SIZE, (Jan 1988): 33–53.https://doi.org/10.1016/B978-0-12-648780-0.50007-4George W. Uetz RISK SENSITIVITY AND FORAGING IN COLONIAL SPIDERS, (Jan 1988): 353–377.https://doi.org/10.1016/B978-0-12-648780-0.50019-0 Michael Earle A Flexible Body Mass in Social Carnivores, The American Naturalist 129, no.55 (Oct 2015): 755–760.https://doi.org/10.1086/284670Marc Bekoff, Michael C. Wells Social Ecology and Behavior of Coyotes, (Jan 1986): 251–338.https://doi.org/10.1016/S0065-3454(08)60193-XK. G. Van Orsdol, Jeannette P. Hanby, J. D. Bygott Ecological correlates of lion social organization ( Panthers, leo ), Journal of Zoology 206, no.11 (Aug 2009): 97–112.https://doi.org/10.1111/j.1469-7998.1985.tb05639.xRonald L. Tilson, William J. Hamilton Social dominance and feeding patterns of spotted hyaenas, Animal Behaviour 32, no.33 (Aug 1984): 715–724.https://doi.org/10.1016/S0003-3472(84)80147-5J. Wesley Burgess Do humans show a “species-typical” group size?, Ethology and Sociobiology 5, no.11 (Jan 1984): 51–57.https://doi.org/10.1016/0162-3095(84)90035-9L.M. Gosling Book review, Animal Behaviour 31, no.33 (Aug 1983): 953–954.https://doi.org/10.1016/S0003-3472(83)80256-5 Peter S. Rodman Inclusive Fitness and Group Size with a Reconsideration of Group Sizes in Lions and Wolves, The American Naturalist 118, no.22 (Oct 2015): 275–283.https://doi.org/10.1086/283819Peter M. Waser Sociality or territorial defense? The influence of resource renewal, Behavioral Ecology and Sociobiology 8, no.33 (Jun 1981): 231–237.https://doi.org/10.1007/BF00299835Marco Campenní, Federico Cecconi Quasi-PSO Algorithm for Modeling Foraging Dynamics in Social Mammals, (): 276–288.https://doi.org/10.4018/978-1-4666-1565-6.ch017

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