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首页> 外文期刊>Aquaculture Economics & Management >A SYSTEM DYNAMICS APPROACH TO SEA LICE CONTROL IN NORWAY
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A SYSTEM DYNAMICS APPROACH TO SEA LICE CONTROL IN NORWAY

机译:挪威海虱控制的系统动力学方法

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摘要

Various methodologies have been used to model the epidemiology and economics of aquatic diseases, including input-output models, benefit-cost analysis, linear programming, compartment models based on differential equations, and spatial models. Despite the virtues of each of these models, there is a need to develop a more integrated approach to the epidemiology and economics of disease that better represents and captures existing feedback mechanisms that can influence the success of disease control interventions and their cost-effectiveness. In this paper, we motivate the use of system dynamics (SD) modeling in the context of sea lice control in Norwegian farmed salmon. Separate models of sea lice and salmon growth were designed and integrated to capture the feedbacks between them. Different simulation scenarios highlight the benefits of the approach. Model results indicated that changing the timing and type of treatment vis-a-vis current practices can markedly reduce sea lice infection pressures; such simulated practices are also more cost effective. Our approach further highlights how delays and feedbacks present in these systems influence the success of any disease control protocol, and demonstrates the utility that SD models can play in aquatic health.
机译:已使用各种方法对水生疾病的流行病学和经济学进行建模,包括投入产出模型,效益成本分析,线性规划,基于微分方程的区室模型以及空间模型。尽管每种模型都有其优点,但仍需要针对疾病的流行病学和经济学开发一种更综合的方法,以更好地表示和捕获可以影响疾病控制干预措施及其成本效益的现有反馈机制。在本文中,我们鼓励在挪威养殖鲑鱼海虱控制的背景下使用系统动力学(SD)建模。设计并整合了海虱和鲑鱼生长的单独模型,以捕获它们之间的反馈。不同的模拟方案突出了该方法的好处。模型结果表明,相对于当前做法,改变治疗时间和类型可以显着降低海虱感染压力。这样的模拟做法也更具成本效益。我们的方法进一步强调了这些系统中存在的延迟和反馈如何影响任何疾病控制协议的成功,并证明了SD模型可以在水生健康中发挥作用。

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