Please use this identifier to cite or link to this item: https://hdl.handle.net/10419/342916 
Year of Publication: 
2026
Citation: 
[Journal:] Metrika [ISSN:] 1435-926X [Volume:] 89 [Issue:] 5 [Publisher:] Springer Berlin Heidelberg [Place:] Berlin/Heidelberg [Year:] 2026 [Pages:] 595-608
Publisher: 
Springer Berlin Heidelberg, Berlin/Heidelberg
Abstract: 
In statistical models for the analysis of time-to-event data, individual heterogeneity is usually accounted for by means of one or more random effects, also known as frailties. In the vast majority of the literature, the random effect is assumed to follow a continuous probability distribution. However, in some areas of application, a discrete frailty distribution may be more appropriate. We investigate and compare various existing families of discrete univariate and shared frailty models by taking as our focus the variance of the relative frailty distribution in survivors. The relative frailty variance ( RFV) among survivors provides a readily interpretable measure of how the heterogeneity of a population, as represented by a frailty model, evolves over time. We explore the shape of the RFVfor the purpose of model selection and review available discrete random effect distributions in this context. We find non-monotone trajectories of the RFVfor discrete univariate and shared frailty models with multiple changes in slope over time, which is a property that seems to be absent for continuous frailty models discussed in the literature. We also show that, in contrast to continuous frailty models, the heterogeneity of data generated by a discrete time-invariant frailty distribution, such as the categorical k -point distribution, approaches either infinity or homogeneity in the long run. Through the one-to-one relationship of the RFVwith the cross-ratio function in shared frailty models, our results also apply to patterns of association within a cluster. Extensions and contrasts to discrete time-varying frailty models are discussed.
Subjects: 
Association
Discrete distributions
Frailty
Heterogeneity
Relative frailty variance
Time-to-event models
Persistent Identifier of the first edition: 
Creative Commons License: 
cc-by Logo
Document Type: 
Article
Document Version: 
Published Version
Appears in Collections:

Files in This Item:
File
Size





Items in EconStor are protected by copyright, with all rights reserved, unless otherwise indicated.