The evolution of antimicrobial resistance generally occurs in an environment where antimicrobial concentration is variable, which has dramatic consequences on the microorganisms' fitness landscape, and thus on the evolution of resistance. We investigate the effect of these time-varying patterns of selection within a stochastic model. We consider a homogeneous microbial population of fixed size subjected to periodic alternations of phases of absence and presence of an antimicrobial that stops growth. Combining analytical approaches and stochastic simulations, we quantify how the time necessary for fit resistant bacteria to take over the microbial population depends on the alternation period. We demonstrate that fast alternations strongly acc...
The use of an antibiotic may lead to the emergence and spread of bacterial strains resistant to this...
In this thesis, we are interested in the impacts of environmental variability and population structu...
Antibiotic resistant bacteria are a constant threat in the battle against infectious diseases. One s...
The evolution of antimicrobial resistance can be strongly affected by variations of antimicrobial co...
International audienceThe evolution of antimicrobial resistance can be strongly affected by variatio...
The evolution of antimicrobial resistance can be strongly affected by variations of antimicrobial co...
International audienceThe evolution of antimicrobial resistance can be strongly affected by variatio...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
A preprint peer-reviewed and recommended by PCI Mathematical & Computational Biology (https://mcb.pe...
Funder: MI 2022 - Oxford Mathematical Institute Scholarship CMS Summer Research GrantSpatial heterog...
Antimicrobial efficacy is traditionally described by a single value, the minimal inhibitory concentr...
A preprint peer-reviewed and recommended by PCI Mathematical & Computational Biology (https://mcb.pe...
A preprint peer-reviewed and recommended by PCI Mathematical & Computational Biology (https://mcb.pe...
Acknowledgements: We thank Kacper Kornet and Deryck Thake from the IT team of the Department of Appl...
Antibiotic concentrations vary dramatically in the body and the environment. Hence, understanding th...
The use of an antibiotic may lead to the emergence and spread of bacterial strains resistant to this...
In this thesis, we are interested in the impacts of environmental variability and population structu...
Antibiotic resistant bacteria are a constant threat in the battle against infectious diseases. One s...
The evolution of antimicrobial resistance can be strongly affected by variations of antimicrobial co...
International audienceThe evolution of antimicrobial resistance can be strongly affected by variatio...
The evolution of antimicrobial resistance can be strongly affected by variations of antimicrobial co...
International audienceThe evolution of antimicrobial resistance can be strongly affected by variatio...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
A preprint peer-reviewed and recommended by PCI Mathematical & Computational Biology (https://mcb.pe...
Funder: MI 2022 - Oxford Mathematical Institute Scholarship CMS Summer Research GrantSpatial heterog...
Antimicrobial efficacy is traditionally described by a single value, the minimal inhibitory concentr...
A preprint peer-reviewed and recommended by PCI Mathematical & Computational Biology (https://mcb.pe...
A preprint peer-reviewed and recommended by PCI Mathematical & Computational Biology (https://mcb.pe...
Acknowledgements: We thank Kacper Kornet and Deryck Thake from the IT team of the Department of Appl...
Antibiotic concentrations vary dramatically in the body and the environment. Hence, understanding th...
The use of an antibiotic may lead to the emergence and spread of bacterial strains resistant to this...
In this thesis, we are interested in the impacts of environmental variability and population structu...
Antibiotic resistant bacteria are a constant threat in the battle against infectious diseases. One s...