Approximate nonparametric corrected-score method for joint modeling of survival and longitudinal data measured with error

We consider the problem of jointly modeling survival time and longitudinal data subject to measurement error. The survival times are modeled through the proportional hazards model and a random effects model is assumed for the longitudinal covariate process. Under this framework, we propose an approx...

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Published inBiometrical journal Vol. 53; no. 4; pp. 557 - 577
Main Authors de Dieu Tapsoba, Jean, Lee, Shen-Ming, Wang, C. Y.
Format Journal Article
LanguageEnglish
Published Weinheim WILEY-VCH Verlag 01.07.2011
WILEY‐VCH Verlag
Wiley-VCH
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Online AccessGet full text
ISSN0323-3847
1521-4036
1521-4036
DOI10.1002/bimj.201000180

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Abstract We consider the problem of jointly modeling survival time and longitudinal data subject to measurement error. The survival times are modeled through the proportional hazards model and a random effects model is assumed for the longitudinal covariate process. Under this framework, we propose an approximate nonparametric corrected‐score estimator for the parameter, which describes the association between the time‐to‐event and the longitudinal covariate. The term nonparametric refers to the fact that assumptions regarding the distribution of the random effects and that of the measurement error are unnecessary. The finite sample size performance of the approximate nonparametric corrected‐score estimator is examined through simulation studies and its asymptotic properties are also developed. Furthermore, the proposed estimator and some existing estimators are applied to real data from an AIDS clinical trial.
AbstractList We consider the problem of jointly modeling survival time and longitudinal data subject to measurement error. The survival times are modeled through the proportional hazards model and a random effects model is assumed for the longitudinal covariate process. Under this framework, we propose an approximate nonparametric corrected-score estimator for the parameter, which describes the association between the time-to-event and the longitudinal covariate. The term nonparametric refers to the fact that assumptions regarding the distribution of the random effects and that of the measurement error are unnecessary. The finite sample size performance of the approximate nonparametric corrected-score estimator is examined through simulation studies and its asymptotic properties are also developed. Furthermore, the proposed estimator and some existing estimators are applied to real data from an AIDS clinical trial.
We consider the problem of jointly modeling survival time and longitudinal data subject to measurement error. The survival times are modeled through the proportional hazards model and a random effects model is assumed for the longitudinal covariate process. Under this framework, we propose an approximate nonparametric corrected-score estimator for the parameter, which describes the association between the time-to-event and the longitudinal covariate. The term nonparametric refers to the fact that assumptions regarding the distribution of the random effects and that of the measurement error are unnecessary. The finite sample size performance of the approximate nonparametric corrected-score estimator is examined through simulation studies and its asymptotic properties are also developed. Furthermore, the proposed estimator and some existing estimators are applied to real data from an AIDS clinical trial.We consider the problem of jointly modeling survival time and longitudinal data subject to measurement error. The survival times are modeled through the proportional hazards model and a random effects model is assumed for the longitudinal covariate process. Under this framework, we propose an approximate nonparametric corrected-score estimator for the parameter, which describes the association between the time-to-event and the longitudinal covariate. The term nonparametric refers to the fact that assumptions regarding the distribution of the random effects and that of the measurement error are unnecessary. The finite sample size performance of the approximate nonparametric corrected-score estimator is examined through simulation studies and its asymptotic properties are also developed. Furthermore, the proposed estimator and some existing estimators are applied to real data from an AIDS clinical trial.
Author de Dieu Tapsoba, Jean
Wang, C. Y.
Lee, Shen-Ming
AuthorAffiliation 2 Division of Public Health, Fred Hutchinson Cancer Research Center, Seattle, Washington 98109, U.S.A
1 Department of Statistics, Feng Chia University, Taichung, Taiwan 40724, R.O.C
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Issue 4
Keywords Biometrics
Error estimation
Sample size
Cumulant generating function
Non parametric method
Corrected score
Non parametric estimation
Multivariate analysis
Covariate
Statistical simulation
Medical science
Random effect
Clinical trial
Survival model
Sample survey
Measurement error
Survival data
Approximate method
Generating function
Life science
Asymptotic behavior
Finite sample
AIDS
Random effects
Statistical association
Statistical estimation
Proportional hazards
Random distribution
Infection
Statistical method
Sampling theory
Survival time
Viral disease
Language English
License http://doi.wiley.com/10.1002/tdm_license_1
CC BY 4.0
Copyright © 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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Mathematics Research Promotion Center, Taiwan
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References_xml – reference: Wang, C.Y., Wang, N. and Wang, S. (2000). Regression analysis when covariates are regression parameters of a random effects model for observed longitudinal measurements. Biometrics 56, 487-495.
– reference: Song, X. and Wang, C. Y. (2008). Semiparametric approaches for joint modeling of survival time and longitudinal data with time-varying coefficients. Biometrics 64, 557-566.
– reference: Henderson, R., Diggle, P. and Dobson, A. (2000). Joint modelling of longitudinal measurements and event time data. Biostatistics 1, 465-480.
– reference: Prentice, R. (1982). Covariate measurement errors and parameter estimates in failure time regression. Biometrika 69, 331-342.
– reference: Wulfsohn, M. and Tsiatis, A. A. (1997). A joint model for survival and longitudinal data measured with error. Biometrics 53, 330-339.
– reference: Gorfine, M., Hsu, L. and Prentice, R. L. (2004). Nonparametric correction for covariate measurement error in a stratified Cox model. Biostatistics 5, 75-87.
– reference: Nakamura, T. (1992). Proportional hazards model with covariates subject to measurement error. Biometrics 48, 829-838.
– reference: Degruttola, V. and Tu, X. M. (1994). Modeling progression of CD4-lymphocyte count and its relationship to survival time. Biometrics 50, 1003-1014.
– reference: Jacqmin-Gadda, H., Commenges, D. and Dartigues, J. F. (2006). Random changepoint model for joint modeling of cognitive decline and dementia. Biometrics 62, 254-260.
– reference: Tsiatis, A. A. and Davidian, M. (2001). A semiparametric estimator for the proportional hazards model with longitudinal covariates measured with error. Biometrika 88, 447-458.
– reference: Huang, Y. and Wang, C. Y. (2000). Cox regression with covariates unascertainable: a nonparametric -correction approach. Journal of the American Statistical Association 95, 1209-1219.
– reference: Song, X. and Huang, Y. (2005). On corrected score approach for proportional hazards model with covariate measurement error. Biometrics 61, 702-714.
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Snippet We consider the problem of jointly modeling survival time and longitudinal data subject to measurement error. The survival times are modeled through the...
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SubjectTerms Analysis of Variance
Applications
Biology, psychology, social sciences
Corrected score
Cumulant generating function
Exact sciences and technology
General topics
Likelihood Functions
Longitudinal Studies
Mathematics
Measurement error
Multivariate analysis
Nonparametric inference
Probability and statistics
Proportional hazards
Proportional Hazards Models
Random effects
Research Design
Sciences and techniques of general use
Statistics
Statistics, Nonparametric
Survival Analysis
Time Factors
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Title Approximate nonparametric corrected-score method for joint modeling of survival and longitudinal data measured with error
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