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An Individual-Based Model of Zebrafish Population Dynamics Accounting for Energy Dynamics

机译:基于个体的斑马鱼种群动态模型说明能量动力学

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摘要

Developing population dynamics models for zebrafish is crucial in order to extrapolate from toxicity data measured at the organism level to biological levels relevant to support and enhance ecological risk assessment. To achieve this, a dynamic energy budget for individual zebrafish (DEB model) was coupled to an individual based model of zebrafish population dynamics (IBM model). Next, we fitted the DEB model to new experimental data on zebrafish growth and reproduction thus improving existing models. We further analysed the DEB-model and DEB-IBM using a sensitivity analysis. Finally, the predictions of the DEB-IBM were compared to existing observations on natural zebrafish populations and the predicted population dynamics are realistic. While our zebrafish DEB-IBM model can still be improved by acquiring new experimental data on the most uncertain processes (e.g. survival or feeding), it can already serve to predict the impact of compounds at the population level.
机译:为将斑马鱼的种群动态模型从在生物体水平上测得的毒性数据推断到与支持和增强生态风险评估相关的生物学水平,至关重要。为此,将单个斑马鱼的动态能量预算(DEB模型)与基于个体的斑马鱼种群动态模型(IBM模型)耦合。接下来,我们将DEB模型拟合到有关斑马鱼生长和繁殖的新实验数据,从而改进现有模型。我们使用敏感性分析进一步分析了DEB模型和DEB-IBM。最后,将DEB-IBM的预测与天然斑马鱼种群的现有观察结果进行比较,并且预测的种群动态是现实的。虽然我们的斑马鱼DEB-IBM模型仍可以通过获取有关最不确定过程(例如生存或进食)的新实验数据来加以改进,但它已经可以用来预测化合物对种群水平的影响。

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