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Longitudinal Targeted Minimum Loss-based Estimation with Temporal-Difference Heterogeneous Transformer

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arxiv 2404.04399 v2 pith:MUO2X6JQ submitted 2024-04-05 stat.ML cs.AIcs.LGstat.APstat.ME

classification stat.MLcs.AIcs.LGstat.APstat.ME
keywords methodestimateestimationlongitudinalloss-basedminimumtargetedtransformer
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We propose Deep Longitudinal Targeted Minimum Loss-based Estimation (Deep LTMLE), a novel approach to estimate the counterfactual mean of outcome under dynamic treatment policies in longitudinal problem settings. Our approach utilizes a transformer architecture with heterogeneous type embedding trained using temporal-difference learning. After obtaining an initial estimate using the transformer, following the targeted minimum loss-based likelihood estimation (TMLE) framework, we statistically corrected for the bias commonly associated with machine learning algorithms. Furthermore, our method also facilitates statistical inference by enabling the provision of 95% confidence intervals grounded in asymptotic statistical theory. Simulation results demonstrate our method's superior performance over existing approaches, particularly in complex, long time-horizon scenarios. It remains effective in small-sample, short-duration contexts, matching the performance of asymptotically efficient estimators. To demonstrate our method in practice, we applied our method to estimate counterfactual mean outcomes for standard versus intensive blood pressure management strategies in a real-world cardiovascular epidemiology cohort study.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Targeted Deep Architectures: A TMLE-Based Framework for Robust Causal Inference in Neural Networks

    cs.LG 2025-07 conditional novelty 6.0 of 10

    TDA updates a small subset of a neural network's weights along a projected influence-function gradient, debiasing plug-in causal estimates and giving valid confidence intervals.

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