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Computing Bayes Factors Using Thermodynamic Integration

Systematic Biology · 2006 · Vol. 55(2) · pp. 195–207
Nicolas LartillotHervé Philippe

Abstract

In the Bayesian paradigm, a common method for comparing two models is to compute the Bayes factor, defined as the ratio of their respective marginal likelihoods. In recent phylogenetic works, the numerical evaluation of marginal likelihoods has often been performed using the harmonic mean estimation procedure. In the present article, we propose to employ another method, based on an analogy with statistical physics, called thermodynamic integration. We describe the method, propose an implementation, and show on two analytical examples that this numerical method yields reliable estimates. In contrast, the harmonic mean estimator leads to a strong overestimation of the marginal likelihood, which is all the more pronounced as the model is higher dimensional. As a result, the harmonic mean estimator systematically favors more parameter-rich models, an artefact that might explain some recent puzzling observations, based on harmonic mean estimates, suggesting that Bayes factors tend to overscore complex models. Finally, we apply our method to the comparison of several alternative models of amino-acid replacement. We confirm our previous observations, indicating that modeling pattern heterogeneity across sites tends to yield better models than standard empirical matrices.

Genomics and Phylogenetic StudiesGenetic diversity and population structureEvolution and Paleontology StudiesBayes factorEstimatorBayes' theoremMarginal likelihoodHarmonic meanMathematicsBayesian probabilityApplied mathematicsBayes estimatorHarmonic

MeSH terms

Amino Acid SequenceAnimalsBayes TheoremModels, BiologicalPhylogenyProteinsThermodynamicsLikelihood FunctionsEvolution, Molecular

Funding

  • Centre National de la Recherche Scientifique
Citations
710
FWCI
7.87
field-weighted impact
References
63
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98%
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References
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Molecular Biology and Evolution · 1999 · 3,595 citations
Markov Chasin Monte Carlo Algorithms for the Bayesian Analysis of Phylogenetic Trees
Molecular Biology and Evolution · 1999 · 1,618 citations
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Computing Bayes Factors Using Thermodynamic Integration
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