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Showing 1–6 of 6
The genomic history of Streptococcus mutans from the Mesolithic until modern times
Thygesen VFDF, Farahani MF, Nielsen SH, Constancias F, Givskov M, Abranches J, Scorrano G, Jørkov MLS, Ebrahimi G, Bendezu-Sarmiento JC, Demeter F, Kristians…
Genome biology · doi:10.1186/s13059-026-04018-w · PMC13097846
Population genomics of post-glacial western Eurasia
Allentoft ME, Sikora M, Refoyo-Martínez A, Irving-Pease EK, Fischer A, Barrie W, Ingason A, Stenderup J, Sjögren KG, Pearson A, Sousa da Mota B, Schulz Pauls…
Nature · doi:10.1038/s41586-023-06865-0 · PMC10781627
100 ancient genomes show repeated population turnovers in Neolithic Denmark
Allentoft ME, Sikora M, Fischer A, Sjögren KG, Ingason A, Macleod R, Rosengren A, Schulz Paulsson B, Jørkov MLS, Novosolov M, Stenderup J, Price TD, Fischer…
Nature · doi:10.1038/s41586-023-06862-3 · PMC10781617
Elevated genetic risk for multiple sclerosis emerged in steppe pastoralist populations
Barrie W, Yang Y, Irving-Pease EK, Attfield KE, Scorrano G, Jensen LT, Armen AP, Dimopoulos EA, Stern A, Refoyo-Martinez A, Pearson A, Ramsøe A, Gaunitz C, D…
Nature · doi:10.1038/s41586-023-06618-z · PMC10781639
Elevated genetic risk for multiple sclerosis originated in Steppe Pastoralist populations
Barrie W, Yang Y, Irving-Pease EK, Attfield KE, Scorrano G, Jensen LT, Armen AP, Dimopoulos EA, Stern A, Refoyo-Martinez A, Ramsøe A, Gaunitz C, Demeter F, J…
bioRxiv · doi:10.1101/2022.09.23.509097
SPIN enables high throughput species identification of archaeological bone by proteomics
Rüther PL, Husic IM, Bangsgaard P, Gregersen KM, Pantmann P, Carvalho M, Godinho RM, Friedl L, Cascalheira J, Taurozzi AJ, Jørkov MLS, Benedetti MM, Haws J,…
Nature communications · doi:10.1038/s41467-022-30097-x · PMC9072323