Surveillance for lumpy skin disease and foot and mouth disease in the Kimberley, Western Australia.

Kimberley Western Australia confidence in freedom foot and mouth disease lumpy skin disease surveillance sensitivity

Journal

Australian veterinary journal
ISSN: 1751-0813
Titre abrégé: Aust Vet J
Pays: England
ID NLM: 0370616

Informations de publication

Date de publication:
14 Jan 2024
Historique:
revised: 20 11 2023
received: 09 05 2023
accepted: 20 12 2023
medline: 15 1 2024
pubmed: 15 1 2024
entrez: 14 1 2024
Statut: aheadofprint

Résumé

We quantified the sensitivity of surveillance for lumpy skin disease (LSD) and foot and mouth disease (FMD) in cattle in the Kimberley region of Western Australia. We monitored producer and veterinary activity with cattle for 3 years commencing January 2020. Each year, ~274,000 cattle of 685,540 present on 92 pastoral leases (stations) were consigned to other stations, live export or slaughter. Veterinarians examined 103,000 cattle on the stations, 177,000 prior to live export, and 10,000 prior to slaughter. Detection probabilities for the disease prior to transport or during veterinary procedures and inspections were elicited by survey of 17 veterinarians working in Northern Australia. The veterinarians estimated the probabilities that they would notice, recognise, and submit samples from clinical cases of LSD and FMD, given a 5% prevalence of clinical signs in the herd. We used scenario tree methodology to estimate monthly surveillance sensitivity of observations made by producers and by veterinarians during herd management visits, pre-export inspections, and ante-mortem inspections. Average monthly combined sensitivities were 0.49 for FMD and 0.37 for LSD. Sensitivity was high for both diseases during the dry season and low in the wet season. We estimated the confidence in freedom from the estimated surveillance sensitivity given one hypothetically infected herd, estimated probability of introduction, and prior confidence in freedom. This study provided assurance that the Kimberley is free of these diseases and that routine producer and veterinary interactions with cattle are adequate for the timely detection of the disease should they be introduced.

Identifiants

pubmed: 38220215
doi: 10.1111/avj.13313
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Subventions

Organisme : Department of Agriculture, Australian Government

Informations de copyright

© 2024 Australian Veterinary Association.

Références

Australian Department of Agriculture. Northern Australia Quarantine Strategy: 25 years of protecting Australia. Agriculture.gov.au, 2023. https://www.agriculture.gov.au/biosecurity-trade/policy/australia/naqs.
NABsnet. NABsnet, 2023. https://nabsnet.com.au.
World Organisation for Animal Health. WAHIS events, 2022. https://wahis.woah.org/#/events.
Buetre B, Wicks S, Kruger H et al. Potential socio-economic impacts of an outbreak of foot-and-mouth disease in Australia (ABARES Research Report 13.11). Canberra, 2013.
Meat and Livestock Australia. National Livestock Identification System. MLA, Sydney, 2014. https://www.nlis.com.au/.
Department of Agriculture, Water and the Environment. Australian Standards for the Export of Livestock 3.2. Canberra. CC BY 4.0. ISBN 978-1-76003-489-4, 2021.
Department of Agriculture, Water and the Environment. Export Meat Operational Guideline 3.3 Ante-mortem inspection. Canberra, 2023.
The Merck Veterinary Manual. 11th edn. Whitehouse Station, 2019.
Bowden TR, Babiuk SL, Parkyn GR et al. Capripoxvirus tissue tropism and shedding: a quantitative study in experimentally infected sheep and goats. Virology 2008;371:380-393.
Martin PAJ, Cameron AR, Greiner M. Demonstrating freedom from disease using multiple complex data sources. Part 1: a new methodology based on scenario trees. Prev Vet Med 2007;79:71-97.
Martin PAJ, Langstaff I, Iglesias RM et al. Assessing the efficacy of general surveillance for detection of incursions of livestock diseases in Australia. Prev Vet Med 2015;121:215-230.
Hemming V, Burgman MA, Hanea AM et al. A practical guide to structured expert elicitation using the IDEA protocol. Methods Ecol Evol 2018;9:169-180.
Garner G, Vosloo W, Tapsuwan S et al. Comparing surveillance approaches to support regaining free status after a foot-and-mouth disease outbreak. Prev Vet Med 2021;194:1-12.
El-Kholy A, Soliman H, Abdelrahman K. Polymerase chain reaction for rapid diagnosis of a recent lumpy skin disease virus incursion to Egypt. Arab J Biotechnol 2008;11:293-302.
MacDiarmid SC. Future options for brucellosis surveillance in New Zealand beef herds. N Z Vet J 1988;36:39-42. https://doi.org/10.1080/00480169.1988.35472.
Hall R, Torpy J, Nye R, et al. Quantitative risk assessment for the introduction of lumpy skin disease virus into Australia via non-regulated pathways. Prepared for the Department of Agriculture, Fisheries and Forestry, 2022. https://www.agriculture.gov.au/sites/default/files/documents/ausvet-lsd-quantitative-assessment.pdf.
CEBRA. What is the probability of a foot & mouth disease (FMD) outbreak in Australia in the next 5 years? Insights from a structured expert judgment exercise. Pursuit, 2022. https://www.pursuit.unimelb.edu.au/articles/be-alert-not-alarmed-about-foot-and-mouth-disease.
CEBRA. What is the probability of a lumpy skin disease outbreak in Australia in the next 5 years? Insights from a structured expert judgment exercise, 2022. https://www.ava.com.au/siteassets/resources/emergency-diseases/lumpy-skin-disease-structured-expert-judgement.pdf.
Eagles D, Walker PJ, Zalucki MP et al. Modelling spatio-temporal patterns of long-distance Culicoides dispersal into northern Australia. Prev Vet Med 2013;110:312-322.
Australian Bureau of Meteorology. Wind roses for selected locations in Australia, 2023. http://www.bom.gov.au/climate/averages/wind/selection_map.shtml.
Environmental Systems Research Institute. ArcGIS Desktop: Release 10. Redlands, CA, 2011.
Hasib FMY, Islam MS, Das T et al. Lumpy skin disease outbreak in cattle population of Chattogram, Bangladesh. Vet Med Sci 2021;7:1616-1624.
Arjkumpa O, Suwannaboon M, Boonrod M, Punyawan I et al. The first lumpy skin disease outbreak in Thailand (2021): epidemiological features and spatio-temporal analysis. Front Vet Sci 2022;8:799065. https://doi.org/10.3389/fvets.2021.799065.
Western Australian Department of Agriculture. Western Australian Feral Pig Strategy 2020-2025. South Perth, 2020. https://www.agric.wa.gov.au/feral-pig-strategy.
East IJ, Martin PAJ, Langstaff I et al. Assessing the delay to detection and the size of the outbreak at the time of detection of incursions of foot and mouth disease in Australia. Prev Vet Med 2016;123:1-11.
Ward M, Garner MG, Cowled BD. Modelling foot-and-mouth disease transmission in a wild pig-domestic cattle ecosystem. Aust Vet J 2015;93:4-12.

Auteurs

G F Mackereth (GF)

Northern Region, Department of Primary Industries and Regional Development, Broome, Western Australia, 6725, Australia.

K L Rayner (KL)

Northern Region, Department of Primary Industries and Regional Development, Broome, Western Australia, 6725, Australia.

A J Larkins (AJ)

School of Medical, Molecular and Forensic Sciences, Murdoch University, Perth, Western Australia, 6150, Australia.

D J Morrell (DJ)

Broome Cattle Vets, Broome, Western Australia, Australia.

E L Pierce (EL)

Broome Cattle Vets, Broome, Western Australia, Australia.

P J Letchford (PJ)

Pastoral Veterinary Solutions, Kununurra, Western Australia, Australia.

Classifications MeSH