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Усиленная машинным обучением дважды робастная оценка (ML-DR)×Маргинальная структурная модель (MSM)×
ОбластьПричинно-следственный выводПричинно-следственный вывод
СемействоRegression modelRegression model
Год появления20182000
Автор методаChernozhukov, Chetverikov, Demirer, Duflo, Hansen, Newey & RobinsJames M. Robins, Miguel A. Hernan, Babette Brumback
ТипSemiparametric causal estimator with ML nuisanceCausal model / semiparametric weighting
Основополагающий источникChernozhukov, V., Chetverikov, D., Demirer, M., Duflo, E., Hansen, C., Newey, W., & Robins, J. (2018). Double/debiased machine learning for treatment and structural parameters. The Econometrics Journal, 21(1), C1-C68. DOI ↗Robins, J. M., Hernan, M. A., & Brumback, B. (2000). Marginal structural models and causal inference in epidemiology. Epidemiology, 11(5), 550-560. DOI ↗
Другие названияML-DR, AIPW with ML, Double/Debiased ML doubly robust, DML-DRMSM, MSM-IPTW, marginal structural Cox model, weighted structural model
Связанные65
СводкаMachine learning-augmented doubly robust (ML-DR) estimation combines the classical doubly robust (AIPW) identification strategy with flexible machine learning models for the nuisance functions — the propensity score and the outcome regression. The result is a causal estimator that is consistent if either ML component is correctly specified, and that achieves valid, root-n inference even when the nuisance models are estimated with high-dimensional regularisation or nonparametric learners.A marginal structural model is a causal modeling framework designed to estimate the effect of a time-varying treatment in the presence of time-varying confounders that are themselves affected by prior treatment. By reweighting observations with inverse probability of treatment weights, MSMs create a pseudo-population in which confounding is eliminated, enabling unbiased estimation of causal treatment contrasts even when standard regression adjustments would fail.
ScholarGateНабор данных
  1. v1
  2. 2 Источники
  3. PUBLISHED
  1. v1
  2. 2 Источники
  3. PUBLISHED

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ScholarGateСравнение методов: Machine learning-augmented doubly robust estimation · Marginal Structural Model. Получено 2026-06-15 из https://scholargate.app/ru/compare