Comparison of high-resolution human leukocyte antigen haplotype frequencies in different ethnic groups: Consequences of sampling fluctuation and haplotype frequency distribution tail truncation.
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Pierre-Antoine Gourraud | P. Gourraud | D. Pappas | É. Marry | Derek James Pappas | Alannah Tomich | Federico Garnier | Evelyne Marry | F. Garnier | Alanna Tomich
[1] P. Gourraud,et al. High-resolution HLA-A, HLA-B, and HLA-DRB1 haplotype frequencies from the French Bone Marrow Donor Registry. , 2015, Human immunology.
[2] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[3] P. Gourraud,et al. Comparative validation of computer programs for haplotype frequency estimation from donor registry data. , 2013, Tissue antigens.
[4] P. Gourraud,et al. 16th IHIW: Global analysis of registry HLA haplotypes from 20 Million individuals: Report from the IHIW Registry Diversity Group , 2012, International journal of immunogenetics.
[5] J. Kaye. The tension between data sharing and the protection of privacy in genomics research. , 2012, Annual review of genomics and human genetics.
[6] É. Marry. [Genetic diversity and bone marrow transplantation]. , 2012, Bulletin de la Société de Pathologie Exotique.
[7] É. Marry. Diversité génétique et greffe de moelle osseuse , 2012 .
[8] P. Meng,et al. Distribution of human leucocyte antigen‐A, ‐B and ‐DR alleles and haplotypes at high resolution in the population from Jiangsu province of China , 2011, International journal of immunogenetics.
[9] S G E Marsh,et al. A community standard for immunogenomic data reporting and analysis: proposal for a STrengthening the REporting of Immunogenomic Studies statement. , 2011, Tissue antigens.
[10] J. Wachowiak,et al. High-resolution human leukocyte antigen allele and haplotype frequencies of the Polish population based on 20,653 stem cell donors. , 2011, Human immunology.
[11] C. Hurley,et al. Human leukocyte antigen-A, -B, -C, -DRB1 allele and haplotype frequencies in Americans originating from southern Europe: contrasting patterns of population differentiation between Italian and Spanish Americans. , 2011, Human immunology.
[12] Andrew R. Jones,et al. Allele frequency net: a database and online repository for immune gene frequencies in worldwide populations , 2010, Nucleic Acids Res..
[13] M. Petzl-Erler,et al. Evaluation of computational methods for the reconstruction of HLA haplotypes. , 2010, Tissue antigens.
[14] W. Klitz,et al. Genetic differentiation of Jewish populations. , 2010, Tissue antigens.
[15] S Tonks,et al. Report from the killer immunoglobulin-like receptor (KIR) anthropology component of the 15th International Histocompatibility Workshop: worldwide variation in the KIR loci and further evidence for the co-evolution of KIR and HLA. , 2010, Tissue antigens.
[16] R. Wassmuth,et al. Estimation of high-resolution HLA-A, -B, -C, -DRB1 allele and haplotype frequencies based on 8862 German stem cell donors and implications for strategic donor registry planning. , 2009, Human immunology.
[17] Shee-Ping Chen,et al. High-resolution human leukocyte antigen (HLA) haplotypes and linkage disequilibrium of HLA-B and -C and HLA-DRB1 and -DQB1 alleles in a Taiwanese population. , 2009, Human immunology.
[18] Damien Sheehan-Connor,et al. One Chance in a Million: Altruism and the Bone Marrow Registry , 2007, The American economic review.
[19] A. Scaradavou,et al. Optimizing unrelated donor cord blood transplantation. , 2009, Biology of blood and marrow transplantation : journal of the American Society for Blood and Marrow Transplantation.
[20] C. Hurley,et al. HLA-A, -B, -C, and -DRB1 allele and haplotype frequencies distinguish Eastern European Americans from the general European American population. , 2009, Tissue antigens.
[21] Loren Gragert,et al. Use of Cost-Effectiveness Analysis to Determine Inventory Size for a National Cord Blood Bank , 2008, Medical decision making : an international journal of the Society for Medical Decision Making.
[22] Harriet Noreen,et al. High-resolution donor-recipient HLA matching contributes to the success of unrelated donor marrow transplantation. , 2007, Blood.
[23] Loren Gragert,et al. High-resolution HLA alleles and haplotypes in the United States population. , 2007, Human immunology.
[24] P. Gourraud,et al. KIR haplotype content at the allele level in 77 Northern Irish families , 2007, Immunogenetics.
[25] J. Pritchard,et al. A Map of Recent Positive Selection in the Human Genome , 2006, PLoS biology.
[26] T. Niu. Algorithms for inferring haplotypes , 2004, Genetic epidemiology.
[27] Thomas J. Smith,et al. Assessment of Optimal Size and Composition of the U.S. National Registry of Hematopoietic Stem Cell Donors , 2004, Transplantation.
[28] C. Hurley,et al. Maximizing optimal hematopoietic stem cell donor selection from registries of unrelated adult volunteers. , 2003, Tissue antigens.
[29] A. Cambon-Thomsen,et al. Cost-effectiveness analysis of two strategies for typing unrelated donors for bone marrow transplantation in France , 2003, The European Journal of Health Economics.
[30] Andrew G Clark,et al. Linkage disequilibrium and the mapping of complex human traits. , 2002, Trends in genetics : TIG.
[31] L. Excoffier,et al. Maximum-likelihood estimation of molecular haplotype frequencies in a diploid population. , 1995, Molecular biology and evolution.
[32] N. Morton,et al. Estimation of haplotype frequencies. , 2008, Tissue antigens.
[33] N. Yasuda. Estimation of haplotype frequency and linkage disequilibrium parameter in the HLA system. , 1978, Tissue antigens.
[34] D. Rubin,et al. Maximum likelihood from incomplete data via the EM - algorithm plus discussions on the paper , 1977 .
[35] J Ott,et al. Counting methods (EM algorithm) in human pedigree analysis: Linkage and segregation analysis , 1977, Annals of human genetics.
[36] Steven G.E. Marsh,et al. Nomenclature for factors of the HLA system , 1975 .
[37] C. A. Smith,et al. THE ESTIMATION OF GENE FREQUENCIES IN A RANDOM‐MATING POPULATION , 1955, Annals of human genetics.