human | Q5 |
P10272 | Archive ouverte UNIGE ID | 395 |
P1960 | Google Scholar author ID | P3IfX8MAAAAJ |
P496 | ORCID iD | 0000-0001-5211-8922 |
P2038 | ResearchGate profile ID | Mathias_Currat |
P69 | educated at | University of Geneva | Q503473 |
P108 | employer | University of Geneva | Q503473 |
P735 | given name | Mathias | Q1818817 |
Mathias | Q1818817 | ||
P6104 | maintained by WikiProject | WikiProject Invasion Biology | Q56241615 |
P106 | occupation | geneticist | Q3126128 |
P5008 | on focus list of Wikimedia project | WikiProject COVID-19 | Q87748614 |
P21 | sex or gender | male | Q6581097 |
Q30583872 | 16(th) IHIW: analysis of HLA population data, with updated results for 1996 to 2012 workshop data (AHPD project report). |
Q33864243 | A general model of distant hybridization reveals the conditions for extinction in Atlantic salmon and brown trout |
Q45136078 | Analysis of the HLA population data (AHPD) submitted to the 15th International Histocompatibility/Immunogenetics Workshop by using the Gene[rate] computer tools accommodating ambiguous data (AHPD project report). |
Q36296323 | Ancestry and demography and descendants of Iron Age nomads of the Eurasian Steppe |
Q57824869 | Bayesian estimation of partial population continuity using ancient DNA and spatially explicit simulations |
Q34573193 | Bayesian estimation of recent migration rates after a spatial expansion |
Q114394311 | Challenging Ancient DNA Results About Putative HLA Protection or Susceptibility to Yersinia pestis |
Q95626158 | Climatic factors influence COVID-19 outbreak as revealed by worldwide mortality |
Q47284225 | Colonization history of the Swiss Rhine basin by the bullhead (Cottus gobio): inference under a Bayesian spatially explicit framework |
Q33897358 | Combining genetic, historical and geographical data to reconstruct the dynamics of bioinvasions: application to the cane toad Bufo marinus |
Q33997612 | Comment on "Ongoing adaptive evolution of ASPM, a brain size determinant in Homo sapiens" and "Microcephalin, a gene regulating brain size, continues to evolve adaptively in humans". |
Q35831190 | Computer simulation of human leukocyte antigen genes supports two main routes of colonization by human populations in East Asia |
Q58415466 | Consequences of diverse evolutionary processes on american genetic gradients of modern humans |
Q33967693 | Consequences of range contractions and range shifts on molecular diversity |
Q42426442 | Correction to: "Forward-in-Time, Spatially Explicit Modeling Software to Simulate Genetic Lineages Under Selection". |
Q49434728 | Cryptic Biological Invasions: a General Model of Hybridization |
Q35701120 | Distinct evolutionary strategies of human leucocyte antigen loci in pathogen-rich environments |
Q27480266 | Early Neolithic genomes from the eastern Fertile Crescent |
Q37040635 | Early farmers from across Europe directly descended from Neolithic Aegeans |
Q52565180 | Effect of hybridization with genome exclusion on extinction risk. |
Q28742209 | Evolution of lactase persistence: an example of human niche construction |
Q36623834 | Forward-in-Time, Spatially Explicit Modeling Software to Simulate Genetic Lineages Under Selection |
Q28743551 | Human genetic differentiation across the Strait of Gibraltar |
Q28710540 | Human neutral genetic variation and forensic STR data |
Q91993947 | Hybridization and introgression during density-dependent range expansion: European wildcats as a case study |
Q21143755 | Impact of selection and demography on the diffusion of lactase persistence |
Q95276879 | Influence of Paleolithic Range Contraction, Admixture and Long-Distance Dispersal on Genetic Gradients of Modern Humans in Asia |
Q47181202 | Influence of admixture and paleolithic range contractions on current European diversity gradients |
Q34530297 | Intra-deme molecular diversity in spatially expanding populations |
Q38214907 | Investigating European genetic history through computer simulations |
Q46238848 | Investigating population continuity with ancient DNA under a spatially explicit simulation framework |
Q28240109 | Local population structure in Arabian Peninsula revealed by Y-STR diversity |
Q36647267 | Long-Distance Dispersal Shaped Patterns of Human Genetic Diversity in Eurasia |
Q35058156 | Modelling interspecific hybridization with genome exclusion to identify conservation actions: the case of native and invasive Pelophylax waterfrogs |
Q21090239 | Modern humans did not admix with Neanderthals during their range expansion into Europe |
Q37360157 | Molecular analysis of the beta-globin gene cluster in the Niokholo Mandenka population reveals a recent origin of the beta(S) Senegal mutation |
Q35221671 | Molecular diversity after a range expansion in heterogeneous environments |
Q56501723 | Principal component analysis under population genetic models of range expansion and admixture |
Q99249406 | Projecting introgression from domestic cats into European wildcats in the Swiss Jura |
Q34235892 | Recent colonization of the Galápagos by the tree Geoffroea spinosa Jacq. (Leguminosae). |
Q48127552 | Recipient of the 2013 Molecular Ecology Prize: Laurent Excoffier |
Q42930670 | Recovering the geographic origin of early modern humans by realistic and spatially explicit simulations |
Q33721660 | SPLATCHE2: a spatially explicit simulation framework for complex demography, genetic admixture and recombination |
Q91937527 | SPLATCHE3: simulation of serial genetic data under spatially explicit evolutionary scenarios including long-distance dispersal |
Q33562271 | Signals of recent spatial expansions in the grey mouse lemur (Microcebus murinus) |
Q28740334 | Strong reproductive isolation between humans and Neanderthals inferred from observed patterns of introgression |
Q57197882 | The Fate of Mutations Surfing on the Wave of a Range Expansion |
Q52977001 | The effect of the Neolithic expansion on European molecular diversity. |
Q34293798 | The genetic history of Europeans |
Q34775522 | The hidden side of invasions: massive introgression by local genes |
Q29544409 | Upper Palaeolithic genomes reveal deep roots of modern Eurasians |
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