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Journal of Theoretical Biology|March 11, 2014
Phylogenetic analysis accounting for age-dependent death and sampling with applications to epidemicsAmaury Lambert, Helen K Alexander, Tanja StadlerACS ES&T Water|July 15, 2026
Improving Inference from Reported Concentrations in Environmental Surveillance by Modeling the Statistical Features of Digital PCRAdrian Lison, Timothy R Julian, Tanja StadlerSystematic Biology|June 8, 2010
A method for investigating relative timing information on phylogenetic treesDaniel Ford, Frederick A Matsen, Tanja StadlerEpidemics|October 26, 2024
Estimating pathogen spread using structured coalescent and birth-death models: A quantitative comparisonSophie Seidel, Tanja Stadler, Timothy G VaughanVirus Evolution|August 21, 2019
Inferring time-dependent migration and coalescence patterns from genetic sequence and predictor data in structured populationsNicola F Müller, Gytis Dudas, Tanja StadlerSystematic Biology|February 16, 2012
A new method for handling missing species in diversification analysis applicable to randomly or nonrandomly sampled phylogeniesNatalie Cusimano, Tanja Stadler, Susanne S RennerBioinformatics (Oxford, England)|May 24, 2018
MASCOT: parameter and state inference under the marginal structured coalescent approximationNicola F Müller, David Rasmussen, Tanja StadlerProceedings of the National Academy of Sciences of the United States of America|April 4, 2018
Impact of the tree prior on estimating clock rates during epidemic outbreaksSimon Möller, Louis du Plessis, Tanja StadlerAnnals of Botany|June 1, 2013
The abrupt climate change at the Eocene-Oligocene boundary and the emergence of South-East Asia triggered the spread of sapindaceous lineagesSven Buerki, Félix Forest, Tanja Stadler, et al.Systematic Biology|January 11, 2015
Age-dependent speciation can explain the shape of empirical phylogeniesOskar Hagen, Klaas Hartmann, Mike Steel, et al.Pageof 20