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E A Ostrander

Showing results (81-90 of 92) with videos related to

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American Journal of Human Genetics|March 26, 1999
Analysis of chromosome 1q42.2-43 in 152 families with high risk of prostate cancerM Gibbs, L Chakrabarti, J L Stanford, et al.
Mammalian Genome : Official Journal of the International Mammalian Genome Society|August 3, 1999
Anchoring of canine linkage groups with chromosome-specific markersP Werner, C S Mellersh, M G Raducha, et al.
Human Heredity|November 30, 2000
Genetic linkage analysis of prostate cancer families to Xq27-28M A Peters, G P Jarvik, M Janer, et al.
American Journal of Human Genetics|May 23, 2000
A genomic scan of families with prostate cancer identifies multiple regions of interestM Gibbs, J L Stanford, G P Jarvik, et al.
American Journal of Human Genetics|August 1, 1997
Linkage analysis of 49 high-risk families does not support a common familial prostate cancer-susceptibility gene at 1q24-25R A McIndoe, J L Stanford, M Gibbs, et al.
American Journal of Human Genetics|March 3, 1999
Evidence for a rare prostate cancer-susceptibility locus at chromosome 1p36M Gibbs, J L Stanford, R A McIndoe, et al.
Genetic Epidemiology|March 21, 2000
Linkage analysis of 150 high-risk prostate cancer families at 1q24-25E L Goode, J L Stanford, L Chakrabarti, et al.
Genome Research|October 10, 2001
Chromosome-specific single-locus FISH probes allow anchorage of an 1800-marker integrated radiation-hybrid/linkage map of the domestic dog genome to all chromosomesM Breen, S Jouquand, C Renier, et al.
Prostate Cancer and Prostatic Diseases|January 5, 2018
Germline variants in IL4, MGMT and AKT1 are associated with prostate cancer-specific mortality: An analysis of 12,082 prostate cancer casesL M FitzGerald, S Zhao, A Leonardson, et al.
Science (New York, N.Y.)|July 10, 2025
Origins and diversity of Greenland's <i>Qimmit</i> revealed with genomes of ancient and modern sled dogsT R Feuerborn, M Appelt, K Bougiouri, et al.
Pageof 10

Showing results (81-90 of 92) with videos related to

Sort By:
Pageof 10
American Journal of Human Genetics|March 26, 1999
Analysis of chromosome 1q42.2-43 in 152 families with high risk of prostate cancerM Gibbs, L Chakrabarti, J L Stanford, et al.
Mammalian Genome : Official Journal of the International Mammalian Genome Society|August 3, 1999
Anchoring of canine linkage groups with chromosome-specific markersP Werner, C S Mellersh, M G Raducha, et al.
Human Heredity|November 30, 2000
Genetic linkage analysis of prostate cancer families to Xq27-28M A Peters, G P Jarvik, M Janer, et al.
American Journal of Human Genetics|May 23, 2000
A genomic scan of families with prostate cancer identifies multiple regions of interestM Gibbs, J L Stanford, G P Jarvik, et al.
American Journal of Human Genetics|August 1, 1997
Linkage analysis of 49 high-risk families does not support a common familial prostate cancer-susceptibility gene at 1q24-25R A McIndoe, J L Stanford, M Gibbs, et al.
American Journal of Human Genetics|March 3, 1999
Evidence for a rare prostate cancer-susceptibility locus at chromosome 1p36M Gibbs, J L Stanford, R A McIndoe, et al.
Genetic Epidemiology|March 21, 2000
Linkage analysis of 150 high-risk prostate cancer families at 1q24-25E L Goode, J L Stanford, L Chakrabarti, et al.
Genome Research|October 10, 2001
Chromosome-specific single-locus FISH probes allow anchorage of an 1800-marker integrated radiation-hybrid/linkage map of the domestic dog genome to all chromosomesM Breen, S Jouquand, C Renier, et al.
Prostate Cancer and Prostatic Diseases|January 5, 2018
Germline variants in IL4, MGMT and AKT1 are associated with prostate cancer-specific mortality: An analysis of 12,082 prostate cancer casesL M FitzGerald, S Zhao, A Leonardson, et al.
Science (New York, N.Y.)|July 10, 2025
Origins and diversity of Greenland's <i>Qimmit</i> revealed with genomes of ancient and modern sled dogsT R Feuerborn, M Appelt, K Bougiouri, et al.
Pageof 10