Lodos J, Ochagavia M E, Rodriguez M, De La Fuente J
Division of Automation, Center for Genetic Engineering and Biotechnology (CIGB), Havana, Cuba.
Prev Vet Med. 1999 Jan 1;38(1):47-63. doi: 10.1016/s0167-5877(98)00113-5.
This paper describes a simulation model to evaluate different control strategies for Boophilus microplus. The model combines a dynamic life-history module for tick-population dynamics with other modules for vaccination, sterile-hybrid larval release and use of acaricide dipping vats. The tick life-history module considers the cattle's nutritional level and allows for distribution of ticks by age at all stages of growth. Appropriately, the model was sensitive to host resistance and to host-nutritional status. The validity of the life-history module--as well as that of the vaccination and acaricide dipping--vats modules--was demonstrated by comparing simulated and real data for several geographical locations in Cuba and Brazil. Optimum tick-control strategies for the first year of vaccination were designed and the effect of long-term vaccination on tick population was also studied.
本文描述了一个用于评估微小牛蜱不同控制策略的模拟模型。该模型将蜱虫种群动态的动态生活史模块与疫苗接种、无菌杂交幼虫释放及使用杀螨剂浸浴槽的其他模块相结合。蜱虫生活史模块考虑了牛的营养水平,并允许在生长的各个阶段按年龄分布蜱虫。适当地,该模型对宿主抗性和宿主营养状况敏感。通过比较古巴和巴西几个地理位置的模拟数据和实际数据,证明了生活史模块以及疫苗接种和杀螨剂浸浴槽模块的有效性。设计了疫苗接种第一年的最佳蜱虫控制策略,并研究了长期疫苗接种对蜱虫种群的影响。