Beyersmann / Allignol / Schumacher | Competing Risks and Multistate Models with R | E-Book | sack.de
E-Book

E-Book, Englisch, 245 Seiten, eBook

Reihe: Use R!

Beyersmann / Allignol / Schumacher Competing Risks and Multistate Models with R


1. Auflage 2011
ISBN: 978-1-4614-2035-4
Verlag: Springer US
Format: PDF
Kopierschutz: 1 - PDF Watermark

E-Book, Englisch, 245 Seiten, eBook

Reihe: Use R!

ISBN: 978-1-4614-2035-4
Verlag: Springer US
Format: PDF
Kopierschutz: 1 - PDF Watermark



This book covers competing risks and multistate models, sometimes summarized as event history analysis. These models generalize the analysis of time to a single event (survival analysis) to analysing the timing of distinct terminal events (competing risks) and possible intermediate events (multistate models). Both R and multistate methods are promoted with a focus on nonparametric methods.
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Research

Weitere Infos & Material


Data examples.- An informal introduction to hazard-based analyses.- Competing risks.- Multistate modelling of competing risks.-  Nonparametric estimation.- Proportional hazards models.- Nonparametric hypothesis testing.- Further topics in competing risks.- Multistate models and their connection to competing risks.- Nonparametric estimation.- Proportional transition hazards models.- Time-dependent covariates and multistate models.- Further topics in multistate modeling.


The authors are affiliated with the Institute of Medical Biometry and Medical Informatics, University Medical Center Freiburg and the Freiburg Center for Data Analysis and Modelling, University of Freiburg, Germany. Jan Beyersmann is Senior Statistician and serves on the editorial board of Statistics in Medicine. Arthur Allignol is Statistician and has contributed several R packages on competing risks and multistate models. Martin Schumacher is Professor of Biostatistics and Director of the Institute of Medical Biometry and Medical Informatics, Freiburg.  He has been involved in theoretical developments as well as in practical applications of survival analyses and their extensions over many years.



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