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On Inductive Biases for Heterogeneous Treatment Effect Estimation

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arxiv 2106.03765 v2 pith:YPIRJVFX submitted 2021-06-07 stat.ML cs.LG

classification stat.MLcs.LG
keywords treatmenteffectstrategiesacrossestimationinductiveinvestigateregularization
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We investigate how to exploit structural similarities of an individual's potential outcomes (POs) under different treatments to obtain better estimates of conditional average treatment effects in finite samples. Especially when it is unknown whether a treatment has an effect at all, it is natural to hypothesize that the POs are similar - yet, some existing strategies for treatment effect estimation employ regularization schemes that implicitly encourage heterogeneity even when it does not exist and fail to fully make use of shared structure. In this paper, we investigate and compare three end-to-end learning strategies to overcome this problem - based on regularization, reparametrization and a flexible multi-task architecture - each encoding inductive bias favoring shared behavior across POs. To build understanding of their relative strengths, we implement all strategies using neural networks and conduct a wide range of semi-synthetic experiments. We observe that all three approaches can lead to substantial improvements upon numerous baselines and gain insight into performance differences across various experimental settings.

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Cited by 2 Pith papers

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

  1. A Generative Framework for Causal Estimation via Importance-Weighted Diffusion Distillation

    cs.LG 2025-05 conditional novelty 6.0 of 10

    IWDD distills a pretrained conditional diffusion model into a one-step generator using randomized treatment sampling, implicitly reweighting observational data for confounding bias and reducing gradient variance.

  2. From Prediction to Incrementality: Causal Optimization for Large-Scale Targeting and Recommendation

    cs.LG 2026-08 conditional novelty 5.0 of 10

    A causal targeting system that optimizes treatment effects under global constraints and uses bandit exploration beat the incumbent prediction-based stack by a statistically significant 7.20% on LinkedIn Feed marketing...

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