A between-herd data-driven stochastic model to explore the spatio-temporal spread of hepatitis E virus in the French pig production network.

Hepatitis E virus is a zoonotic pathogen for which pigs are recognized as the major reservoir in industrialised countries. A multiscale model was developed to assess the HEV transmission and persistence pattern in the pig production sector through an integrative approach taking into account within-f...

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Main Authors: Morgane Salines, Mathieu Andraud, Nicolas Rose, Stefan Widgren
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0230257
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spelling doaj-0a132339809f42e19b8ed62f837a92432021-03-03T21:53:37ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-01157e023025710.1371/journal.pone.0230257A between-herd data-driven stochastic model to explore the spatio-temporal spread of hepatitis E virus in the French pig production network.Morgane SalinesMathieu AndraudNicolas RoseStefan WidgrenHepatitis E virus is a zoonotic pathogen for which pigs are recognized as the major reservoir in industrialised countries. A multiscale model was developed to assess the HEV transmission and persistence pattern in the pig production sector through an integrative approach taking into account within-farm dynamics and animal movements based on actual data. Within-farm dynamics included both demographic and epidemiological processes. Direct contact and environmental transmission routes were considered along with the possible co-infection with immunomodulating viruses (IMVs) known to modify HEV infection dynamics. Movements were limited to 3,017 herds forming the largest community on the swine commercial network in France and data from the national pig movement database were used to build the contact matrix. Between-herd transmission was modelled by coupling within-herd and network dynamics using the SimInf package. Different introduction scenarios were tested as well as a decrease in the prevalence of IMV-infected farms. After introduction of a single infected gilt, the model showed that the transmission pathway as well as the prevalence of HEV-infected pigs at slaughter age were affected by the type of the index farm, the health status of the population and the type of the infected farms. These outcomes could help design HEV control strategies at a territorial scale based on the assessment of the farms' and network's risk.https://doi.org/10.1371/journal.pone.0230257
collection DOAJ
language English
format Article
sources DOAJ
author Morgane Salines
Mathieu Andraud
Nicolas Rose
Stefan Widgren
spellingShingle Morgane Salines
Mathieu Andraud
Nicolas Rose
Stefan Widgren
A between-herd data-driven stochastic model to explore the spatio-temporal spread of hepatitis E virus in the French pig production network.
PLoS ONE
author_facet Morgane Salines
Mathieu Andraud
Nicolas Rose
Stefan Widgren
author_sort Morgane Salines
title A between-herd data-driven stochastic model to explore the spatio-temporal spread of hepatitis E virus in the French pig production network.
title_short A between-herd data-driven stochastic model to explore the spatio-temporal spread of hepatitis E virus in the French pig production network.
title_full A between-herd data-driven stochastic model to explore the spatio-temporal spread of hepatitis E virus in the French pig production network.
title_fullStr A between-herd data-driven stochastic model to explore the spatio-temporal spread of hepatitis E virus in the French pig production network.
title_full_unstemmed A between-herd data-driven stochastic model to explore the spatio-temporal spread of hepatitis E virus in the French pig production network.
title_sort between-herd data-driven stochastic model to explore the spatio-temporal spread of hepatitis e virus in the french pig production network.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2020-01-01
description Hepatitis E virus is a zoonotic pathogen for which pigs are recognized as the major reservoir in industrialised countries. A multiscale model was developed to assess the HEV transmission and persistence pattern in the pig production sector through an integrative approach taking into account within-farm dynamics and animal movements based on actual data. Within-farm dynamics included both demographic and epidemiological processes. Direct contact and environmental transmission routes were considered along with the possible co-infection with immunomodulating viruses (IMVs) known to modify HEV infection dynamics. Movements were limited to 3,017 herds forming the largest community on the swine commercial network in France and data from the national pig movement database were used to build the contact matrix. Between-herd transmission was modelled by coupling within-herd and network dynamics using the SimInf package. Different introduction scenarios were tested as well as a decrease in the prevalence of IMV-infected farms. After introduction of a single infected gilt, the model showed that the transmission pathway as well as the prevalence of HEV-infected pigs at slaughter age were affected by the type of the index farm, the health status of the population and the type of the infected farms. These outcomes could help design HEV control strategies at a territorial scale based on the assessment of the farms' and network's risk.
url https://doi.org/10.1371/journal.pone.0230257
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