Literature DB >> 32625771

Epidemiological analyses of African swine fever in the European Union (November 2017 until November 2018).

Anette Boklund, Brigitte Cay, Klaus Depner, Zsolt Földi, Vittorio Guberti, Marius Masiulis, Aleksandra Miteva, Simon More, Edvins Olsevskis, Petr Šatrán, Mihaela Spiridon, Karl Stahl, Hans-Hermann Thulke, Arvo Viltrop, Grzegorz Wozniakowski, Alessandro Broglia, José Cortinas Abrahantes, Sofie Dhollander, Andrey Gogin, Frank Verdonck, Laura Amato, Alexandra Papanikolaou, Christian Gortázar.   

Abstract

This update on the African swine fever (ASF) outbreaks in the EU demonstrated that out of all tested wild boar found dead, the proportion of positive samples peaked in winter and summer. For domestic pigs only, a summer peak was evident. Despite the existence of several plausible factors that could result in the observed seasonality, there is no evidence to prove causality. Wild boar density was the most influential risk factor for the occurrence of ASF in wild boar. In the vast majority of introductions in domestic pig holdings, direct contact with infected domestic pigs or wild boar was excluded as the route of introduction. The implementation of emergency measures in the wild boar management zones following a focal ASF introduction was evaluated. As a sole control strategy, intensive hunting around the buffer area might not always be sufficient to eradicate ASF. However, the probability of eradication success is increased after adding quick and safe carcass removal. A wider buffer area leads to a higher success probability; however it implies a larger intensive hunting area and the need for more animals to be hunted. If carcass removal and intensive hunting are effectively implemented, fencing is more useful for delineating zones, rather than adding substantially to control efficacy. However, segments of fencing will be particularly useful in those areas where carcass removal or intensive hunting is difficult to implement. It was not possible to demonstrate an effect of natural barriers on ASF spread. Human-mediated translocation may override any effect of natural barriers. Recommendations for ASF control in four different epidemiological scenarios are presented.
© 2018 European Food Safety Authority. EFSA Journal published by John Wiley and Sons Ltd on behalf of European Food Safety Authority.

Entities:  

Keywords:  African swine fever; domestic pigs; epidemiology; management; prevention; risk factor; seasonality; wild boar

Year:  2018        PMID: 32625771      PMCID: PMC7009685          DOI: 10.2903/j.efsa.2018.5494

Source DB:  PubMed          Journal:  EFSA J        ISSN: 1831-4732


  31 in total

1.  Epidemiological analysis of African swine fever in the European Union (September 2019 to August 2020).

Authors:  Daniel Desmecht; Guillaume Gerbier; Christian Gortázar Schmidt; Vilija Grigaliuniene; Georgina Helyes; Maria Kantere; Daniela Korytarova; Annick Linden; Aleksandra Miteva; Ioana Neghirla; Edvins Olsevskis; Sasa Ostojic; Tom Petit; Christoph Staubach; Hans-Hermann Thulke; Arvo Viltrop; Wallo Richard; Grzegorz Wozniakowski; José Abrahantes Cortiñas; Alessandro Broglia; Sofie Dhollander; Eliana Lima; Alexandra Papanikolaou; Yves Van der Stede; Karl Ståhl
Journal:  EFSA J       Date:  2021-05-06

2.  ASF Exit Strategy: Providing cumulative evidence of the absence of African swine fever virus circulation in wild boar populations using standard surveillance measures.

Authors:  Søren Saxmose Nielsen; Julio Alvarez; Dominique Joseph Bicout; Paolo Calistri; Klaus Depner; Julian Ashley Drewe; Bruno Garin-Bastuji; Jose Luis Gonzales Rojas; Christian Gortazar Schmidt; Mette Herskin; Virginie Michel; Miguel Ángel Miranda Chueca; Paolo Pasquali; Helen Clare Roberts; Liisa Helena Sihvonen; Hans Spoolder; Karl Stahl; Antonio Velarde; Christoph Winckler; José Cortiňas Abrahantes; Sofie Dhollander; Corina Ivanciu; Alexandra Papanikolaou; Yves Van der Stede; Sandra Blome; Vittorio Guberti; Federica Loi; Simon More; Edvins Olsevskis; Hans Hermann Thulke; Arvo Viltrop
Journal:  EFSA J       Date:  2021-03-03

3.  A colloidal gold test strip assay for the detection of African swine fever virus based on two monoclonal antibodies against P30.

Authors:  Xinyu Zhang; Xiaoyu Liu; Xiaodong Wu; Weijie Ren; Yanli Zou; Xiaoli Xia; Huaichang Sun
Journal:  Arch Virol       Date:  2021-01-26       Impact factor: 2.574

4.  A Triplex PCR Method for Distinguishing the Wild-Type African Swine Fever Virus From the Deletion Strains by Detecting the Gene Insertion.

Authors:  Zhao Huang; Zhiying Xu; Haoxuan Cao; Fanliang Zeng; Heng Wang; Lang Gong; Shengxun Zhang; Sen Cao; Guihong Zhang; Zezhong Zheng
Journal:  Front Vet Sci       Date:  2022-06-28

5.  Wolf Dispersal Patterns in the Italian Alps and Implications for Wildlife Diseases Spreading.

Authors:  Francesca Marucco; Kristine L Pilgrim; Elisa Avanzinelli; Michael K Schwartz; Luca Rossi
Journal:  Animals (Basel)       Date:  2022-05-13       Impact factor: 3.231

6.  Sampling and detection of African swine fever virus within a feed manufacturing and swine production system.

Authors:  Jordan T Gebhardt; Steve S Dritz; C Grace Elijah; Cassandra K Jones; Chad B Paulk; Jason C Woodworth
Journal:  Transbound Emerg Dis       Date:  2021-10-06       Impact factor: 4.521

7.  Epidemiological analyses of African swine fever in the European Union: (September 2020 to August 2021).

Authors:  Joaquín Vicente Baños; Anette Boklund; Andrey Gogin; Christian Gortázar; Vittorio Guberti; Georgina Helyes; Maria Kantere; Daniela Korytarova; Annick Linden; Marius Masiulis; Aleksandra Miteva; Ioana Neghirla; Edvins Oļševskis; Sasa Ostojic; Satran Petr; Christoph Staubach; Hans-Hermann Thulke; Arvo Viltrop; Grzegorz Wozniakowski; Alessandro Broglia; José Abrahantes Cortiñas; Sofie Dhollander; Lina Mur; Alexandra Papanikolaou; Yves Van der Stede; Gabriele Zancanaro; Karl Ståhl
Journal:  EFSA J       Date:  2022-05-04

8.  Social structure defines spatial transmission of African swine fever in wild boar.

Authors:  Kim M Pepin; Andrew Golnar; Tomasz Podgórski
Journal:  J R Soc Interface       Date:  2021-01-20       Impact factor: 4.118

9.  Analysis of the initiation of viral infection under flow conditions with applications to transmission in feed.

Authors:  Vladimir P Zhdanov; Joshua A Jackman
Journal:  Biosystems       Date:  2020-06-09       Impact factor: 1.973

Review 10.  Putative Role of Arthropod Vectors in African Swine Fever Virus Transmission in Relation to Their Bio-Ecological Properties.

Authors:  Sarah I Bonnet; Emilie Bouhsira; Nick De Regge; Johanna Fite; Florence Etoré; Mutien-Marie Garigliany; Ferran Jori; Laetitia Lempereur; Marie-Frédérique Le Potier; Elsa Quillery; Claude Saegerman; Timothée Vergne; Laurence Vial
Journal:  Viruses       Date:  2020-07-20       Impact factor: 5.048

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