Description of an epidemic simulation model for use in evaluating strategies to control an outbreak of foot-and-mouth disease

被引:109
作者
Bates, TW [1 ]
Thurmond, MC [1 ]
Carpenter, TE [1 ]
机构
[1] Univ Calif Davis, Sch Vet Med, Dept Med & Epidemiol, Davis, CA 95616 USA
关键词
D O I
10.2460/ajvr.2003.64.195
中图分类号
S85 [动物医学(兽医学)];
学科分类号
0906 ;
摘要
Objective-To develop a spatial epidemic model to simulate intraherd and interherd transmission of foot-and-mouth disease (FMD) virus. Sample Population-2,238 herds, representing beef, dairy, swine, goats, and sheep, and 5 sale yards located in Fresno, Kings, and Tulare counties of California. Procedure-Using Monte-Carlo simulations, a spatial stochastic epidemic simulation model was developed to identify new herds that would acquire FMD following random selection of an index herd and to assess progression of an epidemic after implementation of mandatory control strategies. Results-The model included species-specific transition periods for FMD infection, locations of herds, rates of direct and indirect contacts among herds, and probability distributions derived from expert opinions on probabilities of transmission by direct and indirect contact, as well as reduction in contact following implementation of restrictions on movements in designated infected areas and surveillance zones. Models of supplemental control programs included slaughter of all animals within a specified distance of infected herds, slaughter of only high-risk animals identified by use of a model simulation, and vaccination of all animals within a 5- to 50-km radius of infected herds. Conclusions and Clinical Relevance-The FMD model represents a tool for use in planning biosecurity and emergency-response programs and in comparing potential benefits of various strategies for control and eradication of FMD appropriate for specific populations.
引用
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页码:195 / 204
页数:10
相关论文
共 43 条
[1]  
ABBEY HELEN, 1952, HUMAN BIOL, V24, P201
[2]  
[Anonymous], 2001, VET REC, V148, P222
[3]  
[Anonymous], 1997, CENS AGR
[4]   Results of epidemic simulation modeling to evaluate strategies to control an outbreak of foot-and-mouth disease [J].
Bates, TW ;
Thurmond, MC ;
Carpenter, TE .
AMERICAN JOURNAL OF VETERINARY RESEARCH, 2003, 64 (02) :205-210
[5]   Direct and indirect contact rates among beef, dairy, goat, sheep, and swine herds in three California counties, with reference to control of potential foot-and-mouth disease transmission [J].
Bates, TW ;
Thurmond, MC ;
Carpenter, TE .
AMERICAN JOURNAL OF VETERINARY RESEARCH, 2001, 62 (07) :1121-1129
[6]   A DYNAMIC-MODEL FOR COST-BENEFIT ANALYSES OF FOOT-AND-MOUTH-DISEASE CONTROL STRATEGIES [J].
BERENTSEN, PBM ;
DIJKHUIZEN, AA ;
OSKAM, AJ .
PREVENTIVE VETERINARY MEDICINE, 1992, 12 (3-4) :229-243
[7]  
BURROWS R, 1968, VET REC, V82, P387
[8]   NATIONAL AND INTERNATIONAL FOOT AND MOUTH-DISEASE CONTROL PROGRAMS IN PANAMA, CENTRAL AND NORTH-AMERICA [J].
CALLIS, JJ .
BRITISH VETERINARY JOURNAL, 1978, 134 (01) :10-15
[9]   Emergency vaccination of sheep against foot-and-mouth disease: protection against disease and reduction in contact transmission [J].
Cox, SJ ;
Barnett, PV ;
Dani, P ;
Salt, JS .
VACCINE, 1999, 17 (15-16) :1858-1868
[10]  
DIJKHUIZEN AA, 1988, ACTA VET SCAND, P350