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A Bayesian estimation approach for the mortality in a stage-structured demographic model

机译:舞台结构文学模型中死亡率的贝叶斯估算方法

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Control interventions in sustainable pest management schemes are set according to the phenology and the population abundance of the pests. This information can be obtained using suitable mathematical models that describe the population dynamics based on individual life history responses to environmental conditions and resource availability. These responses are described by development, fecundity and survival rate functions, which can be estimated from laboratory experiments. If experimental data are not available, data on field population dynamics can be used for their estimation. This is the case of the extrinsic mortality term that appears in the mortality rate function due to biotic factors. We propose a Bayesian approach to estimate the probability density functions of the parameters in the extrinsic mortality rate function, starting from data on population abundance. The method investigates the time variability in the mortality parameters by comparing simulated and observed trajectories. The grape berry moth, a pest of great importance in European vineyards, has been considered as a case study. Simulated data have been considered to evaluate the convergence of the algorithm, while field data have been used to obtain estimates of the mortality for the grape berry moth.
机译:可持续害虫管理方案中的控制干预根据毒品的候选和人口丰富。可以使用合适的数学模型获得该信息,该数学模型基于各个寿命历史对环境条件和资源可用性的响应来描述人口动态。这些响应是通过显影,繁殖力和生存率函数描述的,这可以从实验室实验估算。如果无法使用实验数据,则可以使用关于现场群体动态的数据来估计。这是由于生物因素导致的死亡率函数中出现的外在死亡术语的情况。我们提出了一种贝叶斯方法来估计外在死亡率函数中参数的概率密度函数,从人口丰富的数据开始。该方法通过比较模拟和观察的轨迹来研究死亡率参数中的时间可变性。葡萄贝瑞蛾,欧洲葡萄园非常重要的害虫被认为是一个案例研究。已经考虑了模拟数据来评估算法的收敛,而现场数据已被用于获得葡萄浆果蛾的死亡率的估计。

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