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P Onkamo

Showing results (1-10 of 13) with videos related to

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Genetic Epidemiology|December 22, 1999
A Bayesian Markov chain Monte Carlo approach to map disease genes in simulated GAW11 dataP Uimari, J Pitkäniemi, P Onkamo
Diabetologia|January 29, 2000
Worldwide increase in incidence of Type I diabetes--the analysis of the data on published incidence trendsP Onkamo, S Väänänen, M Karvonen, et al.
Journal of Medical Genetics|November 1, 2005
An empirical comparison of case-control and trio based study designs in high throughput association mappingP Hintsanen, P Sevon, P Onkamo, et al.
Genetic Epidemiology|January 17, 2002
Bayesian association mapping for quantitative traits in a mixture of two populationsM J Sillanpää, R Kilpikari, S Ripatti, et al.
Human Heredity|July 6, 2000
Estimation of transmission probabilities in families ascertained through a proband with variable age-at-onset disease: application to the HLA A, B and DR loci in Finnish families with type 1 diabetes. The DiMe Study GroupJ Pitkäniemi, P Onkamo, E Arjas, et al.
Diabetes Care|December 10, 1999
Neonatal anthropometric measurements and risk of childhood-onset type 1 diabetes. DiMe Study GroupT Podar, P Onkamo, T Forsen, et al.
Annals of Human Genetics|December 18, 2002
Association analysis for quantitative traits by data mining: QHPMP Onkamo, V Ollikainen, P Sevon, et al.
Genetic Epidemiology|January 17, 2002
Mining associations between genetic markers, phenotypes, and covariatesP Sevon, V Ollikainen, P Onkamo, et al.
American Journal of Human Genetics|June 10, 2000
Data mining applied to linkage disequilibrium mappingH T Toivonen, P Onkamo, K Vasko, et al.
Scientific Data|July 23, 2024
Archaeological Artefact Database of Finland (AADA)P Pesonen, U Nordfors, M Roose, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Genetic Epidemiology|December 22, 1999
A Bayesian Markov chain Monte Carlo approach to map disease genes in simulated GAW11 dataP Uimari, J Pitkäniemi, P Onkamo
Diabetologia|January 29, 2000
Worldwide increase in incidence of Type I diabetes--the analysis of the data on published incidence trendsP Onkamo, S Väänänen, M Karvonen, et al.
Journal of Medical Genetics|November 1, 2005
An empirical comparison of case-control and trio based study designs in high throughput association mappingP Hintsanen, P Sevon, P Onkamo, et al.
Genetic Epidemiology|January 17, 2002
Bayesian association mapping for quantitative traits in a mixture of two populationsM J Sillanpää, R Kilpikari, S Ripatti, et al.
Human Heredity|July 6, 2000
Estimation of transmission probabilities in families ascertained through a proband with variable age-at-onset disease: application to the HLA A, B and DR loci in Finnish families with type 1 diabetes. The DiMe Study GroupJ Pitkäniemi, P Onkamo, E Arjas, et al.
Diabetes Care|December 10, 1999
Neonatal anthropometric measurements and risk of childhood-onset type 1 diabetes. DiMe Study GroupT Podar, P Onkamo, T Forsen, et al.
Annals of Human Genetics|December 18, 2002
Association analysis for quantitative traits by data mining: QHPMP Onkamo, V Ollikainen, P Sevon, et al.
Genetic Epidemiology|January 17, 2002
Mining associations between genetic markers, phenotypes, and covariatesP Sevon, V Ollikainen, P Onkamo, et al.
American Journal of Human Genetics|June 10, 2000
Data mining applied to linkage disequilibrium mappingH T Toivonen, P Onkamo, K Vasko, et al.
Scientific Data|July 23, 2024
Archaeological Artefact Database of Finland (AADA)P Pesonen, U Nordfors, M Roose, et al.
Pageof 2