Control of equine influenza: scenario testing using a realistic metapopulation model of spread

Author:

Baguelin M.12,Newton J. R.1,Demiris N.3,Daly J.4,Mumford J. A.2,Wood J. L. N.2

Affiliation:

1. Animal Health Trust, Lanwades Park, Kentford, Newmarket CB8 7UU, UK

2. Department of Veterinary Medecine, Cambridge Infectious Disease Consortium, University of Cambridge, Madingley Road, Cambridge CB3 0ES, UK

3. MRC Biostatistics Unit, Institute of Public Health, Cambridge CB2 0SR, UK

4. Viral Brain Infections Group, 8th Floor Duncan Building, Daulby Street, Liverpool L69 3GA, UK

Abstract

We present a metapopulation model of the spread of equine influenza among thoroughbred horses parametrized with data from a 2003 outbreak in Newmarket, UK. The number of horses initially susceptible is derived from a threshold theorem and a published statistical model. Two simulated likelihood-based methods are used to find the within- and between-yard transmissions using both exponential and empirical latent and infectious periods. We demonstrate that the 2003 outbreak was largely locally driven and use the parametrized model to address important questions of control. The chance of a large epidemic is shown to be largely dependent on the size of the index yard. The impact of poor responders to vaccination is estimated under different scenarios. A small proportion of poor responders strongly influences the efficiency of vaccine policies, which increases risk further when the vaccine and infecting strains differ following antigenic drift. Finally, the use of vaccinating in the face of an outbreak is evaluated at a global and individual management group level. The benefits for an individual horse trainer are found to be substantial, although this is influenced by the behaviour of other trainers.

Publisher

The Royal Society

Subject

Biomedical Engineering,Biochemistry,Biomaterials,Bioengineering,Biophysics,Biotechnology

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