Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/16621
Title: A joint model for hierarchical continuous and zero-inflated overdispersed count data
Authors: KASSAHUN, Wondwosen 
NEYENS, Thomas 
MOLENBERGHS, Geert 
FAES, Christel 
VERBEKE, Geert 
Issue Date: 2015
Source: JOURNAL OF STATISTICAL COMPUTATION AND SIMULATION, 85(3), p. 552-571
Abstract: Many applications in public health, medical and biomedical or other studies demand modeling of two or more longitudinal outcomes jointly to get better insight in their joint evolution. In this regard, a joint model for a longitudinal continuous and a count sequence, the latter possibly overdispersed and zero-inflated, will be specified that assembles aspects coming from each one of them into one single model. Further, a subject-specific random effect is included to account for the correlation in the continuous outcome. For the count outcome, clustering and overdispersion are accommodated through two distinct sets of random effects in a generalized linear model as proposed by Molenberghs et al (2010); one is normally distributed, the other conjugate to the outcome distribution. The association among the two sequences is captured by correlating the normal random effects describing the continuous and count outcome sequences, respectively. An excessive number of zero counts is often accounted for by using a so-called zero-inflated or hurdle model. Zero-inflated models combine either a Poisson or negative-binomial model with an atom at zero as a mixture, while the hurdle model separately handles the zero observations and the positive counts. This paper proposes a general joint modeling framework in which all these features can appear together.
Notes: Molenberghs, G (reprint author), Univ Hasselt, CenStat, I BioStat, B-3590 Diepenbeek, Belgium. geert.molenberghs@uhasselt.be
Keywords: clustering; conjugate random effect; hurdle model; joint model; normal random effect; overdispersion; zero-inflation
Document URI: http://hdl.handle.net/1942/16621
ISSN: 0094-9655
e-ISSN: 1563-5163
DOI: 10.1080/00949655.2013.829058
ISI #: 000344408800008
Rights: © 2013 Taylor & Francis
Category: A1
Type: Journal Contribution
Validations: ecoom 2015
Appears in Collections:Research publications

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