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Genetic Epidemiology|January 1, 1987
Nonrandom sampling in genetic epidemiology: maximum likelihood methods for multifactorial analysis of quantitative data ascertained through truncationD C Rao, R WetteAmerican Journal of Human Genetics|January 1, 1990
Environmental index in genetic epidemiology: an investigation of its role, adequacy, and limitationsD C Rao, R WetteGenetic Epidemiology|January 1, 1989
Nonrandom sampling in genetic epidemiology: an implementation of the Hanis-Chakraborty method for multifactorial analysisD C Rao, R WetteGenetic Epidemiology|January 1, 1989
Path analysis under generalized marital resemblance: evaluation of the assumptions underlying the mixed homogamy model by the Monte Carlo methodM McGue, R Wette, D C RaoGenetic Epidemiology|January 1, 1987
A Monte Carlo evaluation of three statistical methods used in path analysisM McGue, R Wette, D C RaoGenetic Epidemiology|January 1, 1984
Evaluation of path analysis through computer simulation: effect of incorrectly assuming independent distribution of familial correlationsM McGue, R Wette, D C RaoAmerican Journal of Human Genetics|March 1, 1988
Multifactorial analysis of family data ascertained through truncation: a comparative evaluation of two methods of statistical inferenceD C Rao, R Wette, W J EwensBiometrics|September 1, 1988
On the properties of maximum likelihood estimators of familial correlations under variable sibship sizeR Wette, M K McGue, D C Rao, et al.Biometrics|March 1, 1995
Properties of alternative estimators of familial correlations under variable sibship sizeG P Vogler, R Wette, M K McGue, et al.Human Heredity|January 1, 1989
Heterogeneity in the biological and cultural determinants of high-density lipoprotein cholesterol in five North American populations: the Lipid Research Clinics Family StudyG P Vogler, R Wette, P M Laskarzewski, et al.Pageof 51