scholarly article | Q13442814 |
review article | Q7318358 |
P2093 | author name string | Minus van Baalen | |
Sébastien Lion | |||
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Local dispersal promotes biodiversity in a real-life game of rock-paper-scissors | Q31096211 | ||
Emergent trade-offs and selection for outbreak frequency in spatial epidemics | Q33209989 | ||
Cooperation prevails when individuals adjust their social ties | Q33261001 | ||
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Cooperation and competition between relatives. | Q34589033 | ||
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Group selection and kin selection: two concepts but one process | Q35800357 | ||
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Spatial structure often inhibits the evolution of cooperation in the snowdrift game | Q39128164 | ||
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Local interactions select for lower pathogen infectivity | Q42034277 | ||
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Effects of neighbourhood size and connectivity on the spatial Continuous Prisoner's Dilemma | Q47407335 | ||
The Unit of Selection in Viscous Populations and the Evolution of Altruism. | Q49094048 | ||
Altruism through beard chromodynamics. | Q50735112 | ||
Spatial effects in social dilemmas. | Q50950814 | ||
Punishment and reputation in spatial public goods games. | Q51023489 | ||
Evolution of altruism in stepping-stone populations with overlapping generations. | Q51053394 | ||
Variable investment, the Continuous Prisoner's Dilemma, and the origin of cooperation. | Q51085249 | ||
The evolution of cooperation in a lattice-structured population. | Q51106827 | ||
Invading wave of cooperation in a spatial iterated prisoner's dilemma. | Q51127255 | ||
Ecological symmetry breaking can favour the evolution of altruism in an action-response game. | Q51204380 | ||
Using Moment Equations to Understand Stochastically Driven Spatial Pattern Formation in Ecological Systems | Q51207353 | ||
Parasite-driven extinction in spatially explicit host-parasite systems. | Q51681170 | ||
From infanticide to parental care: why spatial structure can help adults be good parents. | Q51702153 | ||
Local migration promotes competitive restraint in a host-pathogen 'tragedy of the commons'. | Q51724718 | ||
The evolution of parasite manipulation of host dispersal. | Q51729426 | ||
The evolution of helping and harming on graphs: the return of the inclusive fitness effect. | Q51902473 | ||
From inclusive fitness to fixation probability in homogeneous structured populations. | Q51907068 | ||
The evolution of dispersal in a Levins' type metapopulation model. | Q51907420 | ||
Invasion and adaptive evolution for individual-based spatially structured populations. | Q51913040 | ||
Evolution of cooperation in a finite homogeneous graph. | Q51913945 | ||
The role of trade-off shapes in the evolution of parasites in spatial host populations: an approximate analytical approach. | Q51930554 | ||
Modelling social evolution: the relative merits and limitations of a Hamilton's rule-based approach. | Q51935156 | ||
Timescales of population rarity and commonness in random environments. | Q51946817 | ||
Unifying evolutionary dynamics: from individual stochastic processes to macroscopic models. | Q51952329 | ||
Disease evolution on networks: the role of contact structure | Q52017741 | ||
Evolution in a spatially structured population subject to rare epidemics. | Q52065438 | ||
How should we define fitness in structured metapopulation models? Including an application to the calculation of evolutionarily stable dispersal strategies. | Q52066005 | ||
Overlapping generations can promote altruistic behavior. | Q52073567 | ||
Short- vs. long-range disperser: the evolutionarily stable allocation in a lattice-structured habitat | Q52132777 | ||
Unifying genetic and game theoretic models of kin selection for continuous traits. | Q52234390 | ||
The spatial spread of altruism versus the evolutionary response of egoists. | Q53507726 | ||
On moment closures for population dynamics in continuous space. | Q53637885 | ||
Role of mutator alleles in adaptive evolution. | Q54564129 | ||
Evolutionary games on cycles. | Q55317990 | ||
Can altruism evolve in purely viscous populations? | Q56016624 | ||
Adaptive radiation in a heterogeneous environment | Q56038387 | ||
Spiral wave structure in pre-biotic evolution: Hypercycles stable against parasites | Q56806046 | ||
Invasion, stability and evolution to criticality in spatially extended, artificial host—pathogen ecologies | Q56937379 | ||
Spatially structured superinfection and the evolution of disease virulence | Q57001149 | ||
The curse of the pharaoh in space: free-living infectious stages and the evolution of virulence in spatially explicit populations | Q57937965 | ||
Non-equilibrium critical phenomena and phase transitions into absorbing states | Q58094039 | ||
Evolutionary games and spatial chaos | Q59066465 | ||
P433 | issue | 3 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | evolutionary ecology | Q1382557 |
P6104 | maintained by WikiProject | WikiProject Ecology | Q10818384 |
P304 | page(s) | 277-295 | |
P577 | publication date | 2007-12-07 | |
P1433 | published in | Ecology Letters | Q1282051 |
P1476 | title | Self-structuring in spatial evolutionary ecology | |
P478 | volume | 11 |
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Q30380862 | Bacteriophages as model organisms for virus emergence research. |
Q38187123 | Biological information: why we need a good measure and the challenges ahead |
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Q38273506 | Evolution of spatially structured host-parasite interactions. |
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Q38905247 | Fitness consequences of outcrossing in a social spider with an inbreeding mating system |
Q35586889 | Fitness costs in spatially structured environments. |
Q34571201 | Horizontal gene transfer and the evolution of bacterial cooperation |
Q51612674 | Host resistance and coevolution in spatially structured populations. |
Q35212982 | Immunity, suicide or both? Ecological determinants for the combined evolution of anti-pathogen defense systems |
Q51691311 | Inclusive fitness from multitype branching processes. |
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Q35033179 | Is cooperation viable in mobile organisms? Simple Walk Away rule favors the evolution of cooperation in groups |
Q53494251 | Joint evolution of multiple social traits: a kin selection analysis. |
Q39983072 | Kin competition and the evolution of cooperation |
Q55688133 | Kin in space: social viscosity in a spatially and genetically substructured network. |
Q60464546 | Kin selection in den sharing develops under limited availability of tree hollows for a forest marsupial |
Q39366043 | Limited gene dispersal and spatial genetic structure as stabilizing factors in an ant-plant mutualism |
Q58765476 | Limited role of spatial self-structuring in emergent trade-offs during pathogen evolution |
Q46243433 | Live bearing promotes the evolution of sociality in reptiles |
Q45950324 | Maintenance of microbial cooperation mediated by public goods in single and multiple traits scenarios. |
Q27323496 | Metabolic and demographic feedbacks shape the emergent spatial structure and function of microbial communities |
Q46261934 | Microbial expansion-collision dynamics promote cooperation and coexistence on surfaces |
Q57049783 | Model of bacterial toxin-dependent pathogenesis explains infective dose |
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Q26853307 | Modelling the course of an HIV infection: insights from ecology and evolution |
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Q34175007 | Much ado about nothing: Nowak et al.'s charge against inclusive fitness theory |
Q47817851 | Multilevel mutation-selection systems and set-valued duals |
Q46833070 | Oh sister, where art thou? Spatial population structure and the evolution of an altruistic defence trait. |
Q35725111 | Patchiness in a microhabitat chip affects evolutionary dynamics of bacterial cooperation |
Q30244204 | Pattern transitions in spatial epidemics: Mechanisms and emergent properties. |
Q52691270 | Population viscosity can promote the evolution of altruistic sterile helpers and eusociality. |
Q43098487 | Resource and competitive dynamics shape the benefits of public goods cooperation in a plant pathogen |
Q92101516 | Resource heterogeneity and the evolution of public goods cooperation |
Q51145944 | Rumour propagation and the eco-evolutionary dynamics of social information use. |
Q33828818 | Self-organization, layered structure, and aggregation enhance persistence of a synthetic biofilm consortium |
Q51686889 | Self-organizing patterns maintained by competing associations in a six-species predator-prey model. |
Q26766227 | Sharing the sandbox: Evolutionary mechanisms that maintain bacterial cooperation |
Q55366489 | Shearing in flow environment promotes evolution of social behavior in microbial populations. |
Q51947482 | Social and individual learning of helping in humans and other species. |
Q42379463 | Social carry-over effects underpin trans-seasonally linked structure in a wild bird population. |
Q95832418 | Social goods dilemmas in heterogeneous societies |
Q46373190 | Social networks dynamics revealed by temporal analysis: An example in a non-human primate (Macaca sylvanus) in "La Forêt des Singes". |
Q102152242 | Spatial organization in microbial range expansion emerges from trophic dependencies and successful lineages |
Q37295444 | Spatial self-organization favors heterotypic cooperation over cheating |
Q35027684 | Spatial structure facilitates cooperation in a social dilemma: empirical evidence from a bacterial community |
Q36084169 | Spatial structure, cooperation and competition in biofilms |
Q35610811 | Spatial structure, transmission modes and the evolution of viral exploitation strategies. |
Q89393605 | Split between two worlds: automated sensing reveals links between above- and belowground social networks in a free-living mammal |
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Q47629496 | The cultural evolution of emergent group-level traits |
Q37111946 | The evolution of strand preference in simulated RNA replicators with strand displacement: implications for the origin of transcription |
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Q30656147 | Topological effects of network structure on long-term social network dynamics in a wild mammal. |
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Q55052058 | Viscous medium promotes cooperation in the pathogenic bacterium Pseudomonas aeruginosa. |
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