Literature DB >> 23704802

Predicting Viral Infection From High-Dimensional Biomarker Trajectories.

Minhua Chen1, Aimee Zaas, Christopher Woods, Geoffrey S Ginsburg, Joseph Lucas, David Dunson, Lawrence Carin.   

Abstract

There is often interest in predicting an individual's latent health status based on high-dimensional biomarkers that vary over time. Motivated by time-course gene expression array data that we have collected in two influenza challenge studies performed with healthy human volunteers, we develop a novel time-aligned Bayesian dynamic factor analysis methodology. The time course trajectories in the gene expressions are related to a relatively low-dimensional vector of latent factors, which vary dynamically starting at the latent initiation time of infection. Using a nonparametric cure rate model for the latent initiation times, we allow selection of the genes in the viral response pathway, variability among individuals in infection times, and a subset of individuals who are not infected. As we demonstrate using held-out data, this statistical framework allows accurate predictions of infected individuals in advance of the development of clinical symptoms, without labeled data and even when the number of biomarkers vastly exceeds the number of individuals under study. Biological interpretation of several of the inferred pathways (factors) is provided.

Entities:  

Keywords:  Bayesian nonparametrics; Dynamic factor analysis; High-dimensional; Infectious disease; Joint model; Multidimensional longitudinal data; Multivariate functional data; Predictive model

Year:  2011        PMID: 23704802      PMCID: PMC3659825          DOI: 10.1198/jasa.2011.ap10611

Source DB:  PubMed          Journal:  J Am Stat Assoc        ISSN: 0162-1459            Impact factor:   5.033


  26 in total

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  10 in total

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