Birth-death models are stochastic processes describing speciation and extinction through time and across taxa, and are widely used in biology for inference of evolutionary timescales. Previous research has highlighted how the expected trees under constant-rate birth-death (crBD) tend to differ from empirical trees, for example with respect to the amount of phylogenetic imbalance. However, our understanding of how trees differ between crBD and the signal in empirical data remains incomplete. In this Point of View, we aim to expose the degree to which crBD differs from empirically inferred phylogenies and test the limits of the model in practice. Using a wide range of topology indices to compare crBD expectations against a comprehensive datas...
Classic null models for speciation and extinction give rise to phylogenies that differ in distributi...
It is known that phylogenetic trees are more imbalanced than expected from a birth–death model with ...
Quantifying epidemiological dynamics is crucial for understanding and forecasting the spread of an e...
Birth-death models are stochastic processes describing speciation and extinction through time and ac...
Birth-death models (BDMs) are stochastic processes describing the processes of speciation and extinc...
Abstract: There are several models for the evolutionary process forming a species tree. We examine t...
Phylogenetic trees show the evolutionary relationships between individuals, populations or species a...
Bayesian phylogenetic inference requires a tree prior, which models the underlying diversification p...
Here we introduce a general class of multiple calibration birth-death tree priors for use in Bayesia...
Heterogeneous populations can lead to important differences in birth and death rates across a phylog...
An early burst of speciation followed by a subsequent slowdown in the rate of diversification is com...
Birth-death processes have given biologists a model-based framework to answer questions about change...
An early burst of speciation followed by a subsequent slowdown in the rate of diversification is com...
An early burst of speciation followed by a subsequent slowdown in the rate of diversification is com...
The birth-death process has been used to study the evolution of a wide variety of biological entitie...
Classic null models for speciation and extinction give rise to phylogenies that differ in distributi...
It is known that phylogenetic trees are more imbalanced than expected from a birth–death model with ...
Quantifying epidemiological dynamics is crucial for understanding and forecasting the spread of an e...
Birth-death models are stochastic processes describing speciation and extinction through time and ac...
Birth-death models (BDMs) are stochastic processes describing the processes of speciation and extinc...
Abstract: There are several models for the evolutionary process forming a species tree. We examine t...
Phylogenetic trees show the evolutionary relationships between individuals, populations or species a...
Bayesian phylogenetic inference requires a tree prior, which models the underlying diversification p...
Here we introduce a general class of multiple calibration birth-death tree priors for use in Bayesia...
Heterogeneous populations can lead to important differences in birth and death rates across a phylog...
An early burst of speciation followed by a subsequent slowdown in the rate of diversification is com...
Birth-death processes have given biologists a model-based framework to answer questions about change...
An early burst of speciation followed by a subsequent slowdown in the rate of diversification is com...
An early burst of speciation followed by a subsequent slowdown in the rate of diversification is com...
The birth-death process has been used to study the evolution of a wide variety of biological entitie...
Classic null models for speciation and extinction give rise to phylogenies that differ in distributi...
It is known that phylogenetic trees are more imbalanced than expected from a birth–death model with ...
Quantifying epidemiological dynamics is crucial for understanding and forecasting the spread of an e...