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Optimal Pest Control Strategies with Cost-effectiveness Analysis

机译:具有成本效益分析的最佳害虫控制策略

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Pest and plant diseases cause damages and economic losses, threatening food security and ecosystem services. Thus, proper pest management is indispensable to mitigate the risk of losses. The risk of environmental hazards induced by toxic chemicals alongside the rapid development of chemical resistance by insects entails more resilient, sustainable, and ecologically sound approaches to chemical methods of control. This study evaluates the application of three dynamical measures of controls, namely, green insecticide, mating disruption, and the removal of infected plants, in controlling pest insects. A model was built to describe the interaction between plants and insects as well as the circulation of the pathogen. Optimal control measures are sought in such a way they maximize the healthy plant density jointly with the pests’ density under the lowest possible control efforts. Our simulation study shows that all strategies succeed in controlling the insects. However, a cost-effectiveness analysis suggests that a strategy with two measures of green insecticide and plant removal is the most cost-effective, followed by one which applies all control measures. The best strategy projects the decrease of potential loss from 65.36% to 6.12%.
机译:害虫和植物疾病导致损害赔偿和经济损失,威胁粮食安全和生态系统服务。因此,适当的害虫管理是不可或缺的,以减轻损失的风险。有毒化学品诱导的环境危害的风险与昆虫的耐化学性快速发展相对于化学方法,更具弹性,可持续和生态的声音。本研究评估了三种对照,即绿色杀虫剂,交配中断和控制害虫昆虫的感染植物的应用。建立模型以描述植物和昆虫之间的相互作用以及病原体的循环。以这种方式寻求最佳控制措施,它们在最低可能的控制努力下将健康的植物密度与害虫密度相同。我们的仿真研究表明,所有策略都成功地控制了昆虫。然而,成本效益分析表明,具有两种绿色杀虫剂和植物去除措施的策略是最具成本效益的,其次是申请所有控制措施的措施。最佳策略项目将潜在损失降低65.36%至6.12%。

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