Time-stamped, trait-annotated phylogenetic trees built from virus genome data are increasingly used for outbreak investigation and monitoring ongoing epidemics. This routinely involves reconstructing the spatial and demographic processes from large data sets to help unveil the patterns and drivers of virus spread. Such phylodynamic inferences can however become quite time-consuming as the dimensions of the data increase, which has led to a myriad of approaches that aim to tackle this complexity. To elucidate the current state of the art in the field of phylodynamics, we discuss recent developments in Bayesian inference and accompanying software, highlight methods for improving computational efficiency and relevant visualisation tools. As an...
Viral phylodynamics is the study of how immunodynamics, epidemiology, and evolutionary processes act...
Phylodynamics has become an increasingly popular statistical framework to extract evolutionary and e...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Population genetic modeling can enhance Bayesian phylogenetic inference by providing a realistic pri...
Population genetic modeling can enhance Bayesian phylogenetic inference by providing a realistic pri...
Widely applicable, accurate and fast inference methods in phylodynamics are needed to fully profit f...
Widely applicable, accurate and fast inference methods in phylodynamics are needed to fully profit f...
Widely applicable, accurate and fast inference methods in phylodynamics are needed to fully profit f...
Widely applicable, accurate and fast inference methods in phylodynamics are needed to fully profit f...
Population genetic modeling can enhance Bayesian phylogenetic inference by providing a realistic pri...
The shapes of phylogenetic trees relating virus populations are determined by the adaptation of viru...
The shapes of phylogenetic trees relating virus populations are determined by the adaptation of viru...
Mutations that accumulate in the genome of cells or viruses can be used to infer their evolutionary ...
Mutations that accumulate in the genome of cells or viruses can be used to infer their evolutionary ...
Mutations that accumulate in the genome of cells or viruses can be used to infer their evolutionary ...
Viral phylodynamics is the study of how immunodynamics, epidemiology, and evolutionary processes act...
Phylodynamics has become an increasingly popular statistical framework to extract evolutionary and e...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...
Population genetic modeling can enhance Bayesian phylogenetic inference by providing a realistic pri...
Population genetic modeling can enhance Bayesian phylogenetic inference by providing a realistic pri...
Widely applicable, accurate and fast inference methods in phylodynamics are needed to fully profit f...
Widely applicable, accurate and fast inference methods in phylodynamics are needed to fully profit f...
Widely applicable, accurate and fast inference methods in phylodynamics are needed to fully profit f...
Widely applicable, accurate and fast inference methods in phylodynamics are needed to fully profit f...
Population genetic modeling can enhance Bayesian phylogenetic inference by providing a realistic pri...
The shapes of phylogenetic trees relating virus populations are determined by the adaptation of viru...
The shapes of phylogenetic trees relating virus populations are determined by the adaptation of viru...
Mutations that accumulate in the genome of cells or viruses can be used to infer their evolutionary ...
Mutations that accumulate in the genome of cells or viruses can be used to infer their evolutionary ...
Mutations that accumulate in the genome of cells or viruses can be used to infer their evolutionary ...
Viral phylodynamics is the study of how immunodynamics, epidemiology, and evolutionary processes act...
Phylodynamics has become an increasingly popular statistical framework to extract evolutionary and e...
Rapidly evolving pathogens, such as viruses and bacteria, accumulate genetic change at a similar tim...