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Using aggregation methods to assess toxicant effects on population dynamics in spatial systems

机译:使用聚集方法评估有毒物质对空间系统中种群动态的影响

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摘要

Risk assessment in ecotoxicology currently requires extrapolating laboratory results (e.g., bioassays) to populations living. in fragmented heterogeneous environments. To date, metapopulation modeling has been able to contribute little to pollutant management for environment preservation and conservation biology. This situation results from the more general issue of the spatial dimension of ecological systems. We have used aggregation methods to' build an ecotoxicological population model for a river network. Our model described a brown trout population exposed to chronic cadmium pollution. Age structure, spatial distribution, and demographic and migration processes were taken into account to estimate population response to different scenarios of pollutant discharge. For this purpose a multi-region Leslie matrix model was coupled with dose-response curves. Endpoints were features of population dynamics: the asymptotic population growth rate, the stable age structure, and the reproductive values. Thus, different pollution scenarios were compared in terms of subsequent reduction in the population growth rate or in terms of stable age-structure changes. [References: 31]
机译:目前,生态毒理学中的风险评估要求将实验室结果(例如生物测定法)推算给居住人口。在分散的异构环境中。迄今为止,元种群建模对环境管理和保护生物学的污染物管理贡献很小。这种情况是由生态系统空间维度的更一般性问题导致的。我们已经使用聚合方法来建立河流网络的生态毒理种群模型。我们的模型描述了暴露于慢性镉污染的鳟鱼种群。考虑了年龄结构,空间分布以及人口和迁徙过程,以估计人口对不同污染物排放情景的反应。为此,将多区域Leslie矩阵模型与剂量反应曲线耦合。终点是人口动态的特征:渐进的人口增长率,稳定的年龄结构和生殖价值。因此,根据人口增长率随后的下降或年龄结构的稳定变化,比较了不同的污染情景。 [参考:31]

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