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Efectes de tractament heterogenis (CATE / Meta-aprenents)×Algorismes de descobriment causal (PC, FCI, LiNGAM)×
CampInferència causalInferència causal
FamíliaRegression modelRegression model
Any d'origen20182000
Autor originalWager & Athey (causal forest); Künzel et al. (meta-learners)Spirtes, Glymour & Scheines (PC/FCI); Shimizu et al. (LiNGAM)
TipusCausal machine-learning frameworkCausal structure learning
Font seminalWager, S. & Athey, S. (2018). Estimation and Inference of Heterogeneous Treatment Effects using Random Forests. Journal of the American Statistical Association. DOI ↗Spirtes, P., Glymour, C., & Scheines, R. (2000). Causation, Prediction, and Search (2nd ed.). MIT Press. ISBN: 978-0262194402
Àliesconditional average treatment effect, CATE, meta-learners, causal forestPC algorithm, FCI algorithm, LiNGAM, causal structure learning
Relacionats55
ResumHeterogeneous Treatment Effects is a machine-learning framework that estimates how a treatment effect varies across individuals — the conditional average treatment effect (CATE). It bundles meta-learner strategies such as the T-Learner, S-Learner, X-Learner and R-Learner alongside the causal forest of Wager and Athey (2018) and Künzel et al. (2019).Causal discovery is a family of algorithms that automatically learn a directed acyclic graph (DAG) describing causal structure directly from observational data. The constraint-based PC and FCI algorithms were developed by Spirtes, Glymour and Scheines (2000), while the LiNGAM model of Shimizu et al. (2006) exploits linear non-Gaussian structure to orient edges.
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ScholarGateCompara mètodes: Heterogeneous Treatment Effects · Causal Discovery Algorithms. Recuperat el 2026-06-19 de https://scholargate.app/ca/compare