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This book is an introduction to the theory of causal inference in observational studies. An observational study draws inferences about the effects caused by treatments or preventable exposures when randomized experimentation is unethical or infeasible. An observational study is distinguished from an experiment by the problems that follow from the absence of randomized assignment of individuals to treatments. Observational studies are common in most fields that study the effects of treatments or policies on people, including public health and epidemiology, economics and public policy, medicine and clinical psychology, and criminology and empirical legal studies.
After Part I reviews causal inference in randomized experiments, the twelve short chapters in Parts II, III and IV introduce modern topics: the propensity score, ignorable treatment assignment, the principal unobserved covariate, algorithms for optimal matching, randomized reassignment techniques for appraising the covariate balance achieved by matching, covariance adjustment, sensitivity analysis, design sensitivity, ways to design an observational study to be insensitive to larger unmeasured biases, the large sample efficiency of a sensitivity analysis, quasi-experimental devices that provide observable information about unmeasured biases, evidence factors and complementary analyses to address unmeasured biases.
The book is accessible to anyone who has completed an undergraduate course in mathematical statistics. The subject is developed with the aid of two simple empirical examples concerning the health benefits or harms caused by consuming alcohol. The data for these examples and their reanalyses are freely available in an R package, iTOS, associated with Introduction to the Theory of Observational Studies.
Paul R. Rosenbaum is the Robert G. Putzel Professor Emeritus in the Department of Statistics and Data Science at the Wharton School of the University of Pennsylvania. He is the author of several books, including Observational Studies (1st edition 1995, 2nd edition 2002), Design of Observational Studies (1st edition 2010, 2nd edition 2020), Observation and Experiment: An Introduction to Causal Inference (2017), and Replication and Evidence Factors in Observational Studies (2021). In joint work, he and Donald B. Rubin invented the propensity score in 1983. For contributions to causal inference, he received from the Committee of Presidents of Statistical Societies the R. A. Fisher Award in 2019 and the George W. Snedecor Award in 2003.
Preface.- Part I First Steps.- 1. Examples of Observational Studies.- 2. Causal Inference in Randomized Experiments.- 3. Some Background Topics in Statistics.- Part II Adjustments for Observed Covariates.- 4. Propensity Scores and Ignorable Treatment Assignment.- 5. Algorithms for Matching.- 6. Evaluating the Balance of Observed Covariates.- 7. Covariance Adjustment.- Part III Sensitivity of Inferences to Covariates That Were Not Observed.- 8. Sensitivity of Causal Inferences to Unmeasured Biases in Treatment Assignment.- 9. Design Sensitivity and the Choice of Statistical Methods.- 10. Study Design and Design Sensitivity.- 11. Efficiency of Sensitivity Analyses.- Part IV Quasi-experimental Devices.- 12. Known Effects in Observational Studies.- 13. Evidence Factors for Two Control Groups.- 14. Tightened Blocks for Complementary Analyses.- 15. A Look Back Along the Path Taken.- Some Books and Articles About Causal Inference.- Notation.- Solutions to Selected Problems.- Some Comments for Instructors.- Index.
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