Insights from the study of complex systems for the ecology and evolution of animal populations
暂无分享,去创建一个
[1] Jim M Cushing,et al. Transitions in population dynamics: Equilibria to periodic cycles to aperiodic cycles , 1997 .
[2] H. Whitehead,et al. Individual, unit and vocal clan level identity cues in sperm whale codas , 2016, Royal Society Open Science.
[3] Marten Scheffer,et al. Chaos in a long-term experiment with a plankton community , 2008, Nature.
[4] Shinichi Nakagawa,et al. Repeatability for Gaussian and non‐Gaussian data: a practical guide for biologists , 2010, Biological reviews of the Cambridge Philosophical Society.
[5] B. Würsig,et al. Culture and conservation of non-humans with reference to whales and dolphins: review and new directions , 2004 .
[6] Jean-Michel Gaillard,et al. Introduction to: Individual heterogeneity – the causes and consequences of a fundamental biological process , 2018 .
[7] S. Bouwhuis,et al. Heterogeneity in individual quality in birds: overall patterns and insights from a study on common terns , 2018 .
[8] Sergei Petrovskii,et al. Computational ecology as an emerging science , 2012, Interface Focus.
[9] D. Sumpter. The principles of collective animal behaviour , 2006, Philosophical Transactions of the Royal Society B: Biological Sciences.
[10] Lionel Jouvet,et al. Demographic variability and heterogeneity among individuals within and among clonal bacteria strains , 2017, bioRxiv.
[11] Kate E. Jones,et al. Multiple Causes of High Extinction Risk in Large Mammal Species , 2005, Science.
[12] S. Chenoweth,et al. Polyandry and paternity skew in natural and experimental populations of Drosophila serrata , 2008, Molecular ecology.
[13] M. Kirkpatrick,et al. THE EVOLUTION OF MATERNAL CHARACTERS , 1989, Evolution; international journal of organic evolution.
[14] P. Verhulst. Notice sur la loi que la population pursuit dans son accroissement , 1838 .
[15] K. Holekamp,et al. Reproductive skew among males in a female-dominated mammalian society , 2002 .
[16] P. Bak,et al. A forest-fire model and some thoughts on turbulence , 1990 .
[17] D. Turcotte,et al. Self-organized criticality , 1999 .
[18] Charles J. Goodnight,et al. Site-specific group selection drives locally adapted group compositions , 2014, Nature.
[19] J. A. Haines,et al. Indirect effects on fitness between individuals that have never met via an extended phenotype. , 2019, Ecology letters.
[20] Jay Odenbaugh,et al. Idealized, Inaccurate but Successful: A Pragmatic Approach to Evaluating Models in Theoretical Ecology , 2005 .
[21] W. Muir,et al. Multilevel Selection 1: Quantitative Genetics of Inheritance and Response to Selection , 2007, Genetics.
[22] Craig Tovey,et al. Individual differences versus social dynamics in the formation of animal dominance hierarchies , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[23] Albert,et al. Emergence of scaling in random networks , 1999, Science.
[24] Kevin N. Laland,et al. Do animals have culture? , 2003 .
[25] F. Ratnieks,et al. Task partitioning in insect societies , 1999, Insectes Sociaux.
[26] Deborah M. Gordon,et al. The effect of individual variation on the structure and function of interaction networks in harvester ants , 2011, Journal of The Royal Society Interface.
[27] Neil B. Metcalfe,et al. Effects of an environmental perturbation on the social behaviour and physiological function of brown trout , 2001, Animal Behaviour.
[28] A. Barabasi,et al. Hierarchical Organization of Modularity in Metabolic Networks , 2002, Science.
[29] S. Emlen,et al. Spatial organization of the white-fronted bee-eater , 1982, Nature.
[30] S. Redner,et al. Network growth by copying. , 2004, Physical review. E, Statistical, nonlinear, and soft matter physics.
[31] B. Roberts,et al. The rank-order consistency of personality traits from childhood to old age: a quantitative review of longitudinal studies. , 2000, Psychological bulletin.
[32] James H. Brown,et al. Using Montane Mammals to Model Extinctions Due to Global Change , 1992 .
[33] D. Rubenstein,et al. Environmental Uncertainty and the Global Biogeography of Cooperative Breeding in Birds , 2011, Current Biology.
[34] Marie-Josée Fortin,et al. Functional responses, Seasonal variation and thresholds in behavioural responses of moose to road density , 2013 .
[35] I. Smallegange,et al. Population consequences of individual heterogeneity in life histories: overcompensation in response to harvesting of alternative reproductive tactics , 2018 .
[36] D. Herzing,et al. Social structure of Atlantic spotted dolphins, Stenella frontalis, following environmental disturbance and demographic changes , 2014 .
[37] D. Réale,et al. Social niche specialization under constraints: personality, social interactions and environmental heterogeneity , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[38] A. Roques,et al. Direct impacts of recent climate warming on insect populations. , 2010, Integrative zoology.
[39] G. Chaverri,et al. Comparative social network analysis in a leaf-roosting bat , 2010, Behavioral Ecology and Sociobiology.
[40] B. Enquist,et al. Predictability in community dynamics. , 2017, Ecology letters.
[41] Evelyn Fox Keller,et al. Revisiting "scale-free" networks. , 2005, BioEssays : news and reviews in molecular, cellular and developmental biology.
[42] Sumana Annagiri,et al. Network approach to understanding the organization of and the consequence of targeted leader removal on an end-oriented task , 2016, Current zoology.
[43] J. Stamps,et al. Using repeatability to study physiological and behavioural traits: ignore time-related change at your peril , 2015, Animal Behaviour.
[44] Eric J. Gangloff,et al. General conclusion to the special issue Moving forward on individual heterogeneity , 2018 .
[45] R. James,et al. Environmental effects on social interaction networks and male reproductive behaviour in guppies, Poecilia reticulata , 2011, Animal Behaviour.
[46] G. Yohe,et al. A globally coherent fingerprint of climate change impacts across natural systems , 2003, Nature.
[47] N. Dingemanse,et al. Recent models for adaptive personality differences: a review , 2010, Philosophical Transactions of the Royal Society B: Biological Sciences.
[48] Kate L. Laskowski,et al. The repeatability of behaviour: a meta-analysis , 2009, Animal Behaviour.
[49] Sasha R. X. Dall,et al. The behavioural ecology of personality: consistent individual differences from an adaptive perspective , 2004 .
[50] J. Mcglade,et al. The role of memory in ecological systems , 1995, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[51] Robert M. May,et al. Simple mathematical models with very complicated dynamics , 1976, Nature.
[52] Andreas P. Modlmeier,et al. The keystone individual concept: an ecological and evolutionary overview , 2014, Animal Behaviour.
[53] B. Mandelbrot. How Long Is the Coast of Britain ? , 2002 .
[54] D. J. Thompson,et al. Field estimates of reproductive success in a model insect: behavioural surrogates are poor predictors of fitness. , 2011, Ecology letters.
[55] B. Young,et al. Widespread amphibian extinctions from epidemic disease driven by global warming , 2006, Nature.
[56] K. Holekamp,et al. Topological effects of network structure on long-term social network dynamics in a wild mammal. , 2015, Ecology letters.
[57] Neo D. Martinez,et al. Simple rules yield complex food webs , 2000, Nature.
[58] F. Ratnieks,et al. Task partitioning in insect societies: novel situations , 2000, Insectes Sociaux.
[59] P. Verhulst. Recherches mathématiques sur la loi d’accroissement de la population , 1845, Nouveaux mémoires de l'Académie royale des sciences et belles-lettres de Bruxelles.
[60] P. Bak,et al. A deterministic critical forest fire model , 1990 .
[61] Tang,et al. Self-Organized Criticality: An Explanation of 1/f Noise , 2011 .
[62] J. Koprowski,et al. Red Squirrel Middens Influence Abundance but Not Diversity of Other Vertebrates , 2015, PloS one.
[63] Albert-László Barabási,et al. Error and attack tolerance of complex networks , 2000, Nature.
[64] Pierre Legendre,et al. Nonlinear foraging response of a large marine predator to benthic prey: eagle ray pits and bivalves in a New Zealand sandflat , 1997 .
[65] R. May,et al. Biological populations obeying difference equations: stable points, stable cycles, and chaos. , 1975, Journal of theoretical biology.
[66] G. Wittemyer,et al. A Comparison of Social Organization in Asian Elephants and African Savannah Elephants , 2012, International Journal of Primatology.
[67] B. Goodwin,et al. Signs Of Life: How Complexity Pervades Biology , 2000 .
[68] S. Ellner,et al. Chaos in Ecology: Is Mother Nature a Strange Attractor?* , 1993 .
[69] T. Mehner,et al. Emergence and development of personality over the ontogeny of fish in absence of environmental stress factors , 2016, Behavioral Ecology and Sociobiology.
[70] Ricard V Solé,et al. Press perturbations and indirect effects in real food webs. , 2009, Ecology.
[71] Tim G Benton,et al. Complex population dynamics and complex causation: devils, details and demography , 2006, Proceedings of the Royal Society B: Biological Sciences.
[72] R. May,et al. Bifurcations and Dynamic Complexity in Simple Ecological Models , 1976, The American Naturalist.
[73] B. Brembs. Towards a scientific concept of free will as a biological trait: spontaneous actions and decision-making in invertebrates , 2010, Proceedings of the Royal Society B: Biological Sciences.
[74] Santo Fortunato,et al. Scale-free network growth by ranking. , 2006, Physical review letters.
[75] Paul R. Martin,et al. RAPID SYMPATRY EXPLAINS GREATER COLOR PATTERN DIVERGENCE IN HIGH LATITUDE BIRDS , 2010, Evolution; international journal of organic evolution.
[76] Amiyaal Ilany,et al. Social inheritance can explain the structure of animal social networks , 2016, Nature Communications.
[77] Anurag A. Agrawal,et al. Phenotypic Plasticity in the Interactions and Evolution of Species , 2001, Science.
[78] M. Scheffer,et al. Alternative equilibria in shallow lakes. , 1993, Trends in ecology & evolution.
[79] J. Suhonen,et al. Effects of experimental perturbation of group structure on hierarchy formation and behaviour in House Sparrows , 2015 .
[80] T. Clutton‐Brock,et al. Density–related changes in sexual selection in red deer , 1997, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[81] Jack W. Bradbury,et al. Complexity and behavioral ecology , 2014 .
[82] Bette A. Loiselle,et al. It takes two to tango: reproductive skew and social correlates of male mating success in a lek-breeding bird , 2009, Proceedings of the Royal Society B: Biological Sciences.
[83] Charles J. Geyer,et al. Unifying Life‐History Analyses for Inference of Fitness and Population Growth , 2008, The American Naturalist.
[84] Daniel E. Schindler,et al. Prediction, precaution, and policy under global change , 2015, Science.
[85] D. Haydon,et al. Alternative stable states in ecology , 2003 .
[86] B. Drossel,et al. Forest fires and other examples of self-organized criticality , 1996, cond-mat/9610201.
[87] Franz J Weissing,et al. Animal personalities: consequences for ecology and evolution. , 2012, Trends in ecology & evolution.
[88] Hal Whitehead,et al. Analyzing Animal Societies: Quantitative Methods for Vertebrate Social Analysis , 2008 .
[89] Lars Chittka,et al. Learning, specialization, efficiency and task allocation in social insects , 2009, Communicative & integrative biology.
[90] J. P. Mccarty. Ecological Consequences of Recent Climate Change , 2001 .
[91] Guy Theraulaz,et al. Efficiency and robustness in ant networks of galleries , 2004 .
[92] S. J. Arnold,et al. THE MEASUREMENT OF SELECTION ON CORRELATED CHARACTERS , 1983, Evolution; international journal of organic evolution.
[93] B T Grenfell,et al. Noisy Clockwork: Time Series Analysis of Population Fluctuations in Animals , 2001, Science.
[94] D. Queller,et al. Quantitative Genetics, Inclusive Fitness, and Group Selection , 1992, The American Naturalist.
[95] J. Sarmiento,et al. Projecting global marine biodiversity impacts under climate change scenarios , 2009 .
[96] D. A. Perry,et al. Self-organizing systems across scales. , 1995, Trends in ecology & evolution.
[97] J. Pruitt,et al. Social tipping points in animal societies in response to heat stress , 2018, Nature Ecology & Evolution.
[98] R. Alexander Bentley,et al. Network scaling reveals consistent fractal pattern in hierarchical mammalian societies , 2008, Biology Letters.
[99] S. Holbrook,et al. Stochastic density effects on adult fish survival and implications for population fluctuations. , 2015, Ecology letters.
[100] M. Newman,et al. Hierarchical structure and the prediction of missing links in networks , 2008, Nature.
[101] Albert-László Barabási,et al. Hierarchical organization in complex networks. , 2003, Physical review. E, Statistical, nonlinear, and soft matter physics.
[102] Mark E. J. Newman,et al. Power-Law Distributions in Empirical Data , 2007, SIAM Rev..
[103] Bernhard Voelkl,et al. A social network analysis of primate groups , 2009, Primates.
[104] Drossel,et al. Self-organized critical forest-fire model. , 1992, Physical review letters.
[105] L. Real,et al. Behavioral Mechanisms in Evolutionary Ecology , 1995 .
[106] Massimo Marchiori,et al. Error and attacktolerance of complex network s , 2004 .
[107] G. Gettinby,et al. Positive and negative effects of widespread badger culling on tuberculosis in cattle , 2006, Nature.
[108] S. Kuczaj,et al. Hurricane impacts on the foraging patterns of bottlenose dolphins Tursiops truncatus in Mississippi Sound , 2013 .
[109] J. Slate,et al. Natural and Sexual Selection in a Wild Insect Population , 2010, Science.
[110] T. Tregenza,et al. Dynamics of among-individual behavioral variation over adult lifespan in a wild insect , 2015, Behavioral ecology : official journal of the International Society for Behavioral Ecology.
[111] L. Gustafsson,et al. The importance of selection at the level of the pair over 25 years in a natural population of birds , 2013, Ecology and evolution.
[112] A. Dobson,et al. Projected Impacts of Climate and Land-Use Change on the Global Diversity of Birds , 2007, PLoS biology.
[113] Michael Creutz. Playing with sandpiles , 2004 .
[114] F. Rousset,et al. Stochasticity in evolution. , 2009, Trends in ecology & evolution.
[115] J. Pruitt,et al. Opposite responses to selection and where to find them , 2019, Journal of evolutionary biology.
[116] E. Lorenz. Deterministic nonperiodic flow , 1963 .
[117] Andrew Sih,et al. Behavioral syndromes: an ecological and evolutionary overview. , 2004, Trends in ecology & evolution.
[118] Andrew Gelman,et al. Handbook of Markov Chain Monte Carlo , 2011 .
[119] F. Poos,et al. OVERWINTERING OF APLANOBACTER STEWARTI. , 1934, Science.
[120] Steven D. Prager,et al. The dynamics of animal social networks: analytical, conceptual, and theoretical advances , 2014 .
[121] B. Mandelbrot. How Long Is the Coast of Britain? Statistical Self-Similarity and Fractional Dimension , 1967, Science.
[122] S. D. de Boer,et al. Coping styles in animals: current status in behavior and stress-physiology , 1999, Neuroscience & Biobehavioral Reviews.
[123] K. Laland,et al. Environmental Complexity Influences Association Network Structure and Network-Based Diffusion of Foraging Information in Fish Shoals , 2013, The American Naturalist.
[124] Lael Parrott,et al. Viewing forests through the lens of complex systems science , 2014 .
[125] J. Pruitt,et al. Evidence of social niche construction: persistent and repeated social interactions generate stronger personalities in a social spider , 2014, Proceedings of the Royal Society B: Biological Sciences.
[126] Carrie A. Schloss,et al. Dispersal will limit ability of mammals to track climate change in the Western Hemisphere , 2012, Proceedings of the National Academy of Sciences.
[127] M. Taborsky,et al. Animal personality due to social niche specialisation. , 2010, Trends in ecology & evolution.
[128] L. Keller,et al. Partitioning of reproduction in animal societies. , 1994, Trends in ecology & evolution.
[129] L. Becks,et al. TRANSITIONS FROM STABLE EQUILIBRIA TO CHAOS, AND BACK, IN AN EXPERIMENTAL FOOD WEB. , 2008, Ecology.
[130] D. Coltman,et al. Undesirable evolutionary consequences of trophy hunting , 2003, Nature.
[131] I. Couzin,et al. Collective memory and spatial sorting in animal groups. , 2002, Journal of theoretical biology.
[132] J. Gaillard,et al. Quantifying individual heterogeneity and its influence on life‐history trajectories: different methods for different questions and contexts , 2018 .
[133] C. Sueur,et al. A comparative network analysis of social style in macaques , 2011, Animal Behaviour.
[134] Robert M. May,et al. Patterns of Dynamical Behaviour in Single-Species Populations , 1976 .
[135] D. Krakauer,et al. Policing stabilizes construction of social niches in primates , 2006, Nature.
[136] Damien R. Farine,et al. Environment modulates population social structure: experimental evidence from replicated social networks of wild lizards , 2016, Animal Behaviour.
[137] E. Brodie,et al. Consistency of animal social networks after disturbance , 2017 .
[138] Dominique Gravel,et al. When is an ecological network complex? Connectance drives degree distribution and emerging network properties , 2014, PeerJ.
[139] T. Preuss,et al. Non-Linear Analysis Indicates Chaotic Dynamics and Reduced Resilience in Model-Based Daphnia Populations Exposed to Environmental Stress , 2014, PloS one.
[140] Ricard V. Solé,et al. Complexity and fragility in ecological networks , 2000, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[141] T. Garland,et al. Tempo and mode in evolution: phylogenetic inertia, adaptation and comparative methods , 2002 .
[142] A. F. Bennett,et al. Experimental tests of the roles of adaptation, chance, and history in evolution. , 1995, Science.
[143] A. Bronikowski,et al. Among‐individual heterogeneity in maternal behaviour and physiology affects reproductive allocation and offspring life‐history traits in the garter snake Thamnophis elegans , 2018 .
[144] C. Both,et al. Sympatric divergence and clinal variation in multiple coloration traits of Ficedula flycatchers , 2015, Journal of evolutionary biology.
[145] Madhur Anand,et al. Ecological Systems as Complex Systems: Challenges for an Emerging Science , 2010 .
[146] B. Sinervo,et al. The rock–paper–scissors game and the evolution of alternative male strategies , 1996, Nature.
[147] Allen J Moore,et al. FEMALE STRATEGY DURING MATE CHOICE: THRESHOLD ASSESSMENT , 1988, Evolution; international journal of organic evolution.
[148] S. Boutin,et al. Maternal effects and the response to selection in red squirrels , 2004, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[149] T. Bieber. The individual and the group. , 1959, American journal of psychotherapy.
[150] E. Bonabeau,et al. Self-organization in social insects. , 1997, Trends in ecology & evolution.
[151] E. M. Smyth. THE DETERMINATION OF CO2 CONTENT OF AN ATMOSPHERE IN A CLOSED SYSTEM. , 1934, Science.
[152] Ulrika Candolin,et al. Behavioural responses to human‐induced environmental change , 2011, Biological reviews of the Cambridge Philosophical Society.
[153] J. Pruitt,et al. Individual and Group Performance Suffers from Social Niche Disruption , 2016, The American Naturalist.
[154] S. Pratt,et al. Quorum responses and consensus decision making , 2009, Philosophical Transactions of the Royal Society B: Biological Sciences.
[155] J. Hoogland,et al. Prairie dogs increase fitness by killing interspecific competitors , 2016, Proceedings of the Royal Society B: Biological Sciences.
[156] K. Cuddington. The “Balance of Nature” Metaphor and Equilibrium in Population Ecology , 2001 .
[157] B. Brembs,et al. Order in Spontaneous Behavior , 2007, PloS one.
[158] John M. Drake,et al. Population Viability Analysis , 2019, Encyclopedia of Theoretical Ecology.
[159] R M May,et al. Biological Populations with Nonoverlapping Generations: Stable Points, Stable Cycles, and Chaos , 1974, Science.
[160] A. Mcadam,et al. Social traits, social networks and evolutionary biology , 2017, Journal of evolutionary biology.
[161] C. Fox,et al. The adaptive significance of maternal effects. , 1998, Trends in ecology & evolution.
[162] Maureen A. O’Malley,et al. Do simple models lead to generality in ecology? , 2013, Trends in ecology & evolution.
[163] B. Lyon,et al. Across-year social stability shapes network structure in wintering migrant sparrows. , 2014, Ecology letters.
[164] David Lusseau,et al. A killer whale social network is vulnerable to targeted removals , 2006, Biology Letters.
[165] M. Wade,et al. The joint effects of kin, multilevel selection and indirect genetic effects on response to genetic selection , 2008, Journal of evolutionary biology.
[166] T. Tregenza,et al. Wild cricket social networks show stability across generations , 2016, BMC Evolutionary Biology.
[167] S. Levin. Self-organization and the Emergence of Complexity in Ecological Systems , 2005 .
[168] S. Allen,et al. Social cohesion in a hierarchically structured embayment population of Indo-Pacific bottlenose dolphins , 2009, Animal Behaviour.
[169] Theodore G. Manno,et al. Social networking in the Columbian ground squirrel, Spermophilus columbianus , 2008, Animal Behaviour.
[170] Andrew Sih,et al. Ecological implications of behavioural syndromes. , 2012, Ecology letters.
[171] J. Burant,et al. Complex dynamics and the development of behavioural individuality , 2018, Animal Behaviour.
[172] N. Stenseth,et al. Ecological non-monotonicity and its effects on complexity and stability of populations, communities and ecosystems , 2015 .
[173] T. Seeley,et al. Choosing a home: how the scouts in a honey bee swarm perceive the completion of their group decision making , 2003, Behavioral Ecology and Sociobiology.
[174] T. Seeley,et al. Quorum sensing during nest-site selection by honeybee swarms , 2004, Behavioral Ecology and Sociobiology.
[175] Kyle Honegger,et al. Stochasticity, individuality and behavior , 2018, Current Biology.
[176] R. Thornhill. Sexual Selection and Nuptial Feeding Behavior in Bittacus apicalis (Insecta: Mecoptera) , 1976, The American Naturalist.
[177] N. I. Nurieva,et al. Chaos far away from the edge of chaos: A recurrence quantification analysis of plankton time series , 2015 .
[178] R. Shaw,et al. Quantitative genetic study of the adaptive process , 2013, Heredity.
[179] Andrew Berdahl,et al. Social tipping points in animal societies , 2018, Proceedings of the Royal Society B: Biological Sciences.
[180] M. du Plessis,et al. Experimental evidence of a link between breeding conditions and the decision to breed or to help in a colonial cooperative bird , 2004, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[181] J. Fewell. Social Insect Networks , 2003, Science.
[182] Niels J Dingemanse,et al. Animal personality and state-behaviour feedbacks: a review and guide for empiricists. , 2015, Trends in ecology & evolution.
[183] W. Brent Lindquist,et al. Data-Based Analysis of Winner-Loser Models of Hierarchy Formation in Animals , 2009, Bulletin of mathematical biology.
[184] Steven A. Frank,et al. All of life is social , 2007, Current Biology.
[185] J. Pepper,et al. THE ROLE OF MULTILEVEL SELECTION IN THE EVOLUTION OF SEXUAL CONFLICT IN THE WATER STRIDER AQUARIUS REMIGIS , 2010, Evolution; international journal of organic evolution.
[186] R. Proulx. Ecological complexity for unifying ecological theory across scales: A field ecologist's perspective , 2007 .
[187] Jacqueline L. Frair,et al. Thresholds in landscape connectivity and mortality risks in response to growing road networks , 2008 .
[188] Hughes,et al. Biological consequences of global warming: is the signal already apparent? , 2000, Trends in ecology & evolution.
[189] M. C. Ferrari,et al. Evolution and behavioural responses to human-induced rapid environmental change , 2011, Evolutionary applications.
[190] R. Lenski,et al. Historical contingency and the evolution of a key innovation in an experimental population of Escherichia coli , 2008 .
[191] P. Vitousek. Beyond Global Warming: Ecology and Global Change , 1994 .
[192] Dennis L. Murray,et al. Population changes of the vertebrate community during a snowshoe hare cycle in Canada’s boreal forest , 1995 .
[193] David Sloan Wilson,et al. Adaptive individual differences within single populations. , 1998 .
[194] G. Meehl,et al. Climate extremes: observations, modeling, and impacts. , 2000, Science.
[195] Charles J. Goodnight,et al. Contextual Analysis of Models of Group Selection, Soft Selection, Hard Selection, and the Evolution of Altruism , 1992, The American Naturalist.
[196] Lael Parrott,et al. From Management to Stewardship: Viewing Forests As Complex Adaptive Systems in an Uncertain World , 2015 .
[197] David Bierbach,et al. Behavioural individuality in clonal fish arises despite near-identical rearing conditions , 2017, Nature Communications.
[198] Richard James,et al. Animal Social Networks , 2014 .
[199] S. Levin. Ecosystems and the Biosphere as Complex Adaptive Systems , 1998, Ecosystems.
[200] B T Grenfell,et al. Age, sex, density, winter weather, and population crashes in Soay sheep. , 2001, Science.
[201] Anne Charmantier,et al. Quantitative genetics in the wild , 2014 .
[202] D. Naug. Structure and resilience of the social network in an insect colony as a function of colony size , 2009, Behavioral Ecology and Sociobiology.
[203] Albert-László Barabási,et al. Statistical mechanics of complex networks , 2001, ArXiv.
[204] Daniel A. Lidar,et al. Is the Geometry of Nature Fractal? , 1998, Science.
[205] David Lusseau,et al. The emergent properties of a dolphin social network , 2003, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[206] M. Newman. Complex Systems: A Survey , 2011, 1112.1440.
[207] Virginia Burkett,et al. Nonlinear dynamics in ecosystem response to climatic change: Case studies and policy implications , 2005 .
[208] Fernando Soler-Toscano,et al. Measuring complexity to infer changes in the dynamics of ecological systems under stress , 2017 .
[209] B. Young,et al. Response to Comment on "Status and Trends of Amphibian Declines and Extinctions Worldwide" , 2005, Science.
[210] Complex behavior can also emerge from simple linear interactions. A reply to Ramos-Fernández and Boyer (2014) , 2014 .
[211] D. Grossenbacher,et al. INCREASED FLORAL DIVERGENCE IN SYMPATRIC MONKEYFLOWERS , 2011, Evolution; international journal of organic evolution.
[212] Dany Garant,et al. The effects of others’ genes: maternal and other indirect genetic effects , 2014 .
[213] P. Vitousek,et al. INTRODUCED SPECIES: A SIGNIFICANT COMPONENT OF HUMAN-CAUSED GLOBAL CHANGE , 1997 .
[214] C. S. Holling,et al. Regime Shifts, Resilience, and Biodiversity in Ecosystem Management , 2004 .
[215] AN EXPERIMENTAL ANALYSIS OF THE CAUSE OF POPULATION FLUCTUATIONS. , 1934, Science.
[216] D. Green,et al. Interactions matter—complexity in landscapes and ecosystems , 2005 .
[217] N. Metcalfe,et al. The effects of increased flow rates on linear dominance hierarchies and physiological function in brown trout, Salmo trutta , 2002 .
[218] A. Bodini,et al. Vegetation, herbivores and fires in savanna ecosystems: A network perspective , 2016 .
[219] J. Deneubourg,et al. Cockroach aggregation based on strain odour recognition , 2004, Animal Behaviour.
[220] M. Beekman,et al. Does the field of animal personality provide any new insights for behavioral ecology , 2017 .