Risk-based testing of imported animals: A case study for bovine tuberculosis in The Netherlands

被引:8
|
作者
de Vos, Clazien J. [1 ]
van der Goot, Jeanet A. [1 ]
van Zijderveld, Fred G. [1 ]
Swanenburg, Manon [1 ]
Elbers, Armin R. W. [1 ]
机构
[1] Part Wageningen UR, Cent Vet Inst, NL-8200 AB Lelystad, Netherlands
关键词
Bovine tuberculosis; Introduction risk; Optimization; Quantitative risk assessment; Risk-based testing; Stochastic risk model; SURVEILLANCE; CATTLE;
D O I
10.1016/j.prevetmed.2015.04.017
中图分类号
S85 [动物医学(兽医学)];
学科分类号
0906 ;
摘要
In intra-EU trade, the health status of animals is warranted by issuing a health certificate after clinical inspection in the exporting country. This certificate cannot provide guarantee of absence of infection, especially not for diseases with a long incubation period and no overt clinical signs such as bovine tuberculosis (bTB). The Netherlands are officially free from bTB since 1999. However, frequent reintroductions occurred in the past 15 years through importation of infected cattle. Additional testing (AT) of imported cattle could enhance the probability of detecting an imported bTB infection in an early stage. The goal of this study was to evaluate the effectiveness of risk-based AT for bTB in cattle imported into The Netherlands. A generic stochastic import risk model was developed that simulates introduction of infection into an importing country through importation of live animals. Main output parameters are the number of infected animals that is imported (N-inf), the number of infected animals that is detected by testing (N-det), and the economic losses incurred by importing infected animals (loss). The model was parameterized for bTB. Model calculations were optimized to either maximize N-det or to minimize loss. Model results indicate that the risk of bTB introduction into The Netherlands is very high. For the current situation in which Dutch health checks on imported cattle are limited to a clinical inspection of a random sample of 5-10% of imported animals, the calculated annual N-inf = 99 (median value). Random AT of 8% of all imported cattle results in N-det = 7 (median value), while the median N-det = 75 if the sampling strategy for AT is optimized to maximize N-det. However, in the latter scenario, loss is more than twice as large as in the current situation, because only calves are tested for which cost of detection is higher than the expected gain of preventing a possible outbreak. When optimizing the sampling strategy for AT to minimize loss, only breeding and production cattle are selected for AT resulting in N-det = 1 (median value). Loss is; however, reduced by 75% if compared to the current situation. We conclude that the effectiveness of AT can greatly be improved by risk-based sampling. The optimal sampling strategy for risk-based AT for bTB is highly dependent on the objective of AT. If economic losses are to be contained, AT should focus on breeding and production cattle originating from high-risk countries. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:8 / 20
页数:13
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