Bayesian Inference of Reproduction Number from Epidemiological and Genetic Data Using Particle MCMC

Fuente: arXiv
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Main Authors: Gill, Alicia, Koskela, Jere, Didelot, Xavier, Everitt, Richard G.
Format: Preprint
Published: 2023
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author Gill, Alicia
Koskela, Jere
Didelot, Xavier
Everitt, Richard G.
author_facet Gill, Alicia
Koskela, Jere
Didelot, Xavier
Everitt, Richard G.
contents Inference of the reproduction number through time is of vital importance during an epidemic outbreak. Typically, epidemiologists tackle this using observed prevalence or incidence data. However, prevalence and incidence data alone is often noisy or partial. Models can also have identifiability issues with determining whether a large amount of a small epidemic or a small amount of a large epidemic has been observed. Sequencing data however is becoming more abundant, so approaches which can incorporate genetic data are an active area of research. We propose using particle MCMC methods to infer the time-varying reproduction number from a combination of prevalence data reported at a set of discrete times and a dated phylogeny reconstructed from sequences. We validate our approach on simulated epidemics with a variety of scenarios. We then apply the method to real data sets of HIV-1 in North Carolina, USA and tuberculosis in Buenos Aires, Argentina. The models and algorithms are implemented in an open source R package called EpiSky which is available at https://github.com/alicia-gill/EpiSky.
format Preprint
id arxiv_https___arxiv_org_abs_2311_09838
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Bayesian Inference of Reproduction Number from Epidemiological and Genetic Data Using Particle MCMC
Gill, Alicia
Koskela, Jere
Didelot, Xavier
Everitt, Richard G.
Methodology
Genomics
Populations and Evolution
Applications
Computation
62P10, 65C05, 92D10, 92D30
Inference of the reproduction number through time is of vital importance during an epidemic outbreak. Typically, epidemiologists tackle this using observed prevalence or incidence data. However, prevalence and incidence data alone is often noisy or partial. Models can also have identifiability issues with determining whether a large amount of a small epidemic or a small amount of a large epidemic has been observed. Sequencing data however is becoming more abundant, so approaches which can incorporate genetic data are an active area of research. We propose using particle MCMC methods to infer the time-varying reproduction number from a combination of prevalence data reported at a set of discrete times and a dated phylogeny reconstructed from sequences. We validate our approach on simulated epidemics with a variety of scenarios. We then apply the method to real data sets of HIV-1 in North Carolina, USA and tuberculosis in Buenos Aires, Argentina. The models and algorithms are implemented in an open source R package called EpiSky which is available at https://github.com/alicia-gill/EpiSky.
title Bayesian Inference of Reproduction Number from Epidemiological and Genetic Data Using Particle MCMC
topic Methodology
Genomics
Populations and Evolution
Applications
Computation
62P10, 65C05, 92D10, 92D30
url https://arxiv.org/abs/2311.09838