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Estimation of conditional cumulative incidence functions under generalized semiparametric regression models with missing covariates,with application to analysis of biomarker correlates in vaccine trials
Authors:Yanqing Sun  Fei Heng  Unkyung Lee  Peter B. Gilbert
Affiliation:1. Department of Mathematics and Statistics, University of North Carolina at Charlotte, Charlotte, NC, 28223 U.S.A;2. Department of Mathematics and Statistics, University of North Florida, Jacksonville, FL, 32224 U.S.A;3. CBER, Food and Drug Administration, Silver Spring, MD, 20993 U.S.A;4. Department of Biostatistics, University of Washington, Seattle, WA, 98195 U.S.A

Vaccine and Infectious Disease Division, Fred Hutchinson Cancer Research Center, Seattle, WA, 98109 U.S.A

Abstract:This article presents generalized semiparametric regression models for conditional cumulative incidence functions with competing risks data when covariates are missing by sampling design or happenstance. A doubly robust augmented inverse probability weighted (AIPW) complete-case approach to estimation and inference is investigated. This approach modifies IPW complete-case estimating equations by exploiting the key features in the relationship between the missing covariates and the phase-one data to improve efficiency. An iterative numerical procedure is derived to solve the nonlinear estimating equations. The asymptotic properties of the proposed estimators are established. A simulation study examining the finite-sample performances of the proposed estimators shows that the AIPW estimators are more efficient than the IPW estimators. The developed method is applied to the RV144 HIV-1 vaccine efficacy trial to investigate vaccine-induced IgG binding antibodies to HIV-1 as correlates of acquisition of HIV-1 infection while taking account of whether the HIV-1 sequences are near or far from the HIV-1 sequences represented in the vaccine construct.
Keywords:Augmented inverse probability weighted complete-case estimation  competing risks  cumulative incidence function  two-phase sampling  vaccine-induced antibody immune response biomarkers
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