Showing 71–80 of 106
Global demographic history of human populations inferred from whole mitochondrial genomes
Miller EF, Manica A, Amos W.
Royal Society open science · doi:10.1098/rsos.180543
TreeTime: Maximum-likelihood phylodynamic analysis
Sagulenko P, Puller V, Neher RA.
Virus evolution · doi:10.1093/ve/vex042
Bayesian estimation of partial population continuity using ancient DNA and spatially explicit simulations
Silva NM, Rio J, Kreutzer S, Papageorgopoulou C, Currat M.
Evolutionary applications · doi:10.1111/eva.12655
GrapeTree: visualization of core genomic relationships among 100,000 bacterial pathogens
Zhou Z, Alikhan NF, Sergeant MJ, Luhmann N, Vaz C, Francisco AP, Carriço JA, Achtman M.
Genome research · doi:10.1101/gr.232397.117
Comparison of Single Genome and Allele Frequency Data Reveals Discordant Demographic Histories
Beichman AC, Phung TN, Lohmueller KE.
G3 (Bethesda, Md.) · doi:10.1534/g3.117.300259
The Structured Coalescent and Its Approximations
Müller NF, Rasmussen DA, Stadler T.
Molecular biology and evolution · doi:10.1093/molbev/msx186
Estimating the human mutation rate from autozygous segments reveals population differences in human mutational processes
Narasimhan VM, Rahbari R, Scally A, Wuster A, Mason D, Xue Y, Wright J, Trembath RC, Maher ER, van Heel DA, Auton A, Hurles ME, Tyler-Smith C, Durbin R.
Nature communications · doi:10.1038/s41467-017-00323-y
A biologist's guide to Bayesian phylogenetic analysis
Nascimento FF, Reis MD, Yang Z.
Nature ecology & evolution · doi:10.1038/s41559-017-0280-x
Demographic inference through approximate-Bayesian-computation skyline plots
Navascués M, Leblois R, Burgarella C.
PeerJ · doi:10.7717/peerj.3530
Inferring Population Size History from Large Samples of Genome-Wide Molecular Data - An Approximate Bayesian Computation Approach
Boitard S, Rodríguez W, Jay F, Mona S, Austerlitz F.
PLoS genetics · doi:10.1371/journal.pgen.1005877
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