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Modeling Macroinvertebrate Community Dynamics in Stream Mesocosms Contaminated with a Pesticide

机译:在被农药污染的河道间质中建立大型无脊椎动物群落动力学模型

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摘要

Modeling community dynamics of aquatic invertebrates is an important but challenging task, in particular in ecotoxicological risk assessment Systematic parameter estimation and rigorous assessment of model uncertainty are often lacking in such applications. We applied the mechanistic food web model Streambugs to investigate the temporal development of the macroinvertebrate community in an ecotozicological mesocosm experiment with pulsed contaminations with the insecticide thiacloprid. We used Bavesian inference to estimate parameters and their uncertainty. Approx. 85% of all experimental observations lie within the 90% uncertainty intervals indicating reasonably good fits of the calibrated model. However, a validation with independent data was not possible due to lacking data. Investigation of vital rates and limiting factors in the model yielded insights into recovery dynamics. Inclusion of the emergence process and sub-lethal effects turned out to be potentially relevant model extensions. Measurements of food source dynamics, individual body size (classes), and additional knowledge on sub-lethal effects would support more accurate modeling. This application of a process-based, ecotoxicological community model with uncertainty assessment by Bayesian inference increased our process understanding of toxicant effects in macroinvertebrate communities and helped identifying potential improvements in model structure and experimental design.
机译:对水生无脊椎动物的群落动力学进行建模是一项重要但具有挑战性的任务,尤其是在生态毒理风险评估中,在此类应用中通常缺乏系统的参数评估和模型不确定性的严格评估。我们应用机械食物网络模型Streambugs来研究杀虫剂噻虫啉脉冲污染的生态生态学中观实验中大型无脊椎动物群落的时间发展。我们使用Bavesian推断来估计参数及其不确定性。大约所有实验观察中的85%位于90%的不确定性区间内,表明校准模型的合理拟合度很高。但是,由于缺少数据,因此无法使用独立数据进行验证。对模型中生命率和限制因素的研究产生了对恢复动态的见解。出现过程和亚致死效应的纳入被证明是潜在的相关模型扩展。对食物源动力学,个体体重(类别)以及有关亚致死作用的其他知识的测量将支持更精确的建模。通过基于贝叶斯推断的不确定性评估的基于过程的生态毒理学群落模型的这种应用,增加了我们对大型无脊椎动物群落中毒物作用的过程理解,并有助于确定模型结构和实验设计的潜在改进。

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  • 来源
    《Environmental Science & Technology》 |2016年第6期|3165-3173|共9页
  • 作者单位

    Eawag: Swiss Federal Institute of Aquatic Science and Technology, Department Systems Analysis, Integrated Assessment and Modelling, UEberlandstrasse 133, Duebendorf, Switzerland;

    Eawag: Swiss Federal Institute of Aquatic Science and Technology, Department Systems Analysis, Integrated Assessment and Modelling, UEberlandstrasse 133, Duebendorf, Switzerland;

    Eawag: Swiss Federal Institute of Aquatic Science and Technology, Department Systems Analysis, Integrated Assessment and Modelling, UEberlandstrasse 133, Duebendorf, Switzerland;

    UFZ - Helmholtz Centre for Environmental Research, Department of System-Ecotoxicology, Permoserstrasse 188, Leipzig, Germany;

    Eawag: Swiss Federal Institute of Aquatic Science and Technology, Department Systems Analysis, Integrated Assessment and Modelling, UEberlandstrasse 133, Duebendorf, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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