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Plos Computational Biology|December 21, 2021
Conditional prediction of consecutive tumor evolution using cancer progression models: What genotype comes next?Juan Diaz-Colunga, Ramon Diaz-UriartePhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|April 2, 2023
Global epistasis on fitness landscapesJuan Diaz-Colunga, Abigail Skwara, Karna Gowda, et al.BMC Bioinformatics|January 23, 2008
SignS: a parallelized, open-source, freely available, web-based tool for gene selection and molecular signatures for survival and censored dataRamon Diaz-UriarteBMC Bioinformatics|April 17, 2015
Identifying restrictions in the order of accumulation of mutations during tumor progression: effects of passengers, evolutionary models, and samplingRamon Diaz-UriarteMethods in Molecular Biology (Clifton, N.J.)|March 18, 2021
Simulating Evolution in Asexual Populations with EpistasisRamon Diaz-UriarteBioinformatics (Oxford, England)|October 20, 2017
Cancer progression models and fitness landscapes: a many-to-many relationshipRamon Diaz-UriarteBioinformatics (Oxford, England)|February 18, 2014
ADaCGH2: parallelized analysis of (big) CNA dataRamon Diaz-UriarteBioinformatics (Oxford, England)|February 11, 2017
OncoSimulR: genetic simulation with arbitrary epistasis and mutator genes in asexual populationsRamon Diaz-UriartePlos Computational Biology|August 3, 2019
Every which way? On predicting tumor evolution using cancer progression modelsRamon Diaz-Uriarte, Claudia VasalloBMC Bioinformatics|October 18, 2007
A response to Yu et al. "A forward-backward fragment assembling algorithm for the identification of genomic amplification and deletion breakpoints using high-density single nucleotide polymorphism (SNP) array", BMC Bioinformatics 2007, 8: 145Oscar M Rueda, Ramon Diaz-UriartePageof 4