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[20]ESR position in mathematical biology
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Open position
[22]Více ->
This entry was posted in [23]Uncategorized on [24]17/12/2020 by [25]admin.
[26]Defector intolerance promotes cooperation
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One of the outstanding questions for biologists and social scientists has been
the evolution of cooperation. Cooperation is observed both among humans as well
as among animals. The question is "How cooperation can evolve"? This was an
intriguing question since Darwin's Origin of species was published. The problem
is that the basic tenet of evolution [...]
[28]Více ->
This entry was posted in [29]Clánek mesíce on [30]9/11/2020 by [31]admin.
[32]Conflict, Competition, Cooperation and Complexity: Using Evolutionary Game Theory
to model realistic populations
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Conflict, Competition, Cooperation and Complexity: Using Evolutionary Game Theory
to model realistic populations
[34]Více ->
This entry was posted in [35]Uncategorized on [36]10/9/2020 by [37]admin.
[38]Cancer modelling
[39]Leave a Reply
Integrated Mathematical Oncology a part of Moffitt Cancer Center at Tampa focuses
on various aspects of cancer modeling including adaptive cancer therapies that
are currently clinically tested. These approaches that are based on a novel
approach that considers cancer as an evolutionary disease, show usefulness of
game theoretical models in clinical trials. IMO runs its [...]
[40]Více ->
This entry was posted in [41]Uncategorized and tagged [42]Krivan-IMO on
[43]10/2/2020 by [44]admin.
[45]Adaptive growth of bacteria on two substrates
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In Krivan (2006) bacterial growth on a mixture of two sugars is modeled. It is
well know that in mixed substrates with glucose and lactose bacteria often
utilize glucose first and then switch to lactose (or to some alternate source of
energy). At the molecular level this switch is known as the lac operon. In [...]
[47]Více ->
This entry was posted in [48]Actual project, [49]Uncategorized and tagged
[50]Krivan-ifd on [51]6/2/2020 by [52]admin.
[53]The Lotka-Volterra predator-prey game
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The Lotka-Volterra predator-prey model is one of the earliest and, perhaps, the
best known example used to explain why predators can indefinitely coexist with
their prey. The population cycles resulting from this model are well known. In
this article I show how adaptive behavior of prey and predators can destroy these
cycles and stabilize population [...]
[55]Více ->
This entry was posted in [56]Actual project, [57]Uncategorized and tagged
[58]Krivan-game on [59]6/2/2020 by [60]admin.
[61]Habitat selection game
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The habitat selection game is a game theoretical concept that describes species
distribution in22 heterogeneous environments. For a single population, Fretwell
and Lucas (1970) defined the Ideal Free Distribution (IFD) in patchy
environments, under which animal payoffs in all occupied patches are the same and
maximal. Thus, the IFD is a Nash equilibrium of a [...]
[63]Více ->
This entry was posted in [64]Actual project and tagged [65]Krivan-ifd on
[66]6/2/2020 by [67]admin.
[68]Optimal foraging game
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Optimal foraging theory (MacArthur and Pianka, 1966; Charnov, 1976; Stephens and
Krebs, 1986) assumes that organisms forage in such a way as to maximize their
fitness measured as energy intake rate. These models assume a homogeneous
environment with several resource types that a consumer encounters sequentially,
and predict the optimal consumer diet. This line of [...]
[70]Více ->
This entry was posted in [71]Uncategorized and tagged [72]Krivan-oft on
[73]6/2/2020 by [74]admin.
[75]Consistency of host reproduction and infection transmission in sexually transmitted
diseases
Classic models of infection dynamics describe host reproduction independently of
infection transmission. This is fine for air-borne or vector-borne infections,
and also for sexually transmitted diseases in humans, where only a negligible
proportion of sexual intercourses results in reproduction. However, it can be an
important omission in case of sexually transmitted diseases in many animals [...]
[76]Více ->
This entry was posted in [77]Actual project and tagged [78]Berec STD on
[79]22/11/2019 by [80]admin.
[81]Talk: Why would Darwin love game theory?
Evolutionary game theory was developed as mathematical description of Darwin
theory. The talk guides you through basic concepts of evolutionary game theory
(the Nash Equilibrium, Evolutionarily Stable Strategy). Using classical models
i.e., the Hawk-Dove, the Prisoner's dilemma, I will explain evolution of
aggressivity and evolution of cooperation. Pozvánka na prednásku
[82]Více ->
This entry was posted in [83]Seminar and tagged [84]Krivan-game on [85]20/11/2019
by [86]admin.
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