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Regression Calibration with Heteroscedastic Error Variance

Author

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  • Spiegelman Donna
  • Logan Roger
  • Grove Douglas

Abstract

The problem of covariate measurement error with heteroscedastic measurement error variance is considered. Standard regression calibration assumes that the measurement error has a homoscedastic measurement error variance. An estimator is proposed to correct regression coefficients for covariate measurement error with heteroscedastic variance. Point and interval estimates are derived. Validation data containing the gold standard must be available. This estimator is a closed-form correction of the uncorrected primary regression coefficients, which may be of logistic or Cox proportional hazards model form, and is closely related to the version of regression calibration developed by Rosner et al. (1990). The primary regression model can include multiple covariates measured without error. The use of these estimators is illustrated in two data sets, one taken from occupational epidemiology (the ACE study) and one taken from nutritional epidemiology (the Nurses' Health Study). In both cases, although there was evidence of moderate heteroscedasticity, there was little difference in estimation or inference using this new procedure compared to standard regression calibration. It is shown theoretically that unless the relative risk is large or measurement error severe, standard regression calibration approximations will typically be adequate, even with moderate heteroscedasticity in the measurement error model variance. In a detailed simulation study, standard regression calibration performed either as well as or better than the new estimator. When the disease is rare and the errors normally distributed, or when measurement error is moderate, standard regression calibration remains the method of choice.

Suggested Citation

  • Spiegelman Donna & Logan Roger & Grove Douglas, 2011. "Regression Calibration with Heteroscedastic Error Variance," The International Journal of Biostatistics, De Gruyter, vol. 7(1), pages 1-34, January.
  • Handle: RePEc:bpj:ijbist:v:7:y:2011:i:1:n:4
    DOI: 10.2202/1557-4679.1259
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    References listed on IDEAS

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    1. Spiegelman, D. & Valanis, B., 1998. "Correcting for bias in relative risk estimates due to exposure measurement error: A case study of occupational exposure to antineoplastics in pharmacists," American Journal of Public Health, American Public Health Association, vol. 88(3), pages 406-412.
    2. Alexander Kukush & Hans Schneeweis & Roland Wolf, 2004. "Three estimators for the poisson regression model with measurement errors," Statistical Papers, Springer, vol. 45(3), pages 351-368, July.
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