...
首页> 外文期刊>Ecotoxicology >Sublethal toxicant effects with dynamic energy budget theory: model formulation
【24h】

Sublethal toxicant effects with dynamic energy budget theory: model formulation

机译:动态能量收支理论的亚致死毒物影响:模型制定

获取原文
获取原文并翻译 | 示例

摘要

We develop and test a general modeling framework to describe the sublethal effects of pollutants by adding toxicity modules to an established dynamic energy budget (DEB) model. The DEB model describes the rates of energy acquisition and expenditure by individual organisms; the toxicity modules describe how toxicants affect these rates by changing the value of one or more DEB parameters, notably the parameters quantifying the rates of feeding and maintenance. We investigate four toxicity modules that assume: (1) effects on feeding only; (2) effects on maintenance only; (3) effects on feeding and maintenance with similar values for the toxicity parameters; and (4) effects on feeding and maintenance with different values for the toxicity parameters. We test the toxicity modules by fitting each to published data on feeding, respiration, growth and reproduction. Among the pollutants tested are metals (mercury and copper) and various organic compounds (chlorophenols, toluene, polycyclic aromatic hydrocarbons, tetradifon and pyridine); organisms include mussels, oysters, earthworms, water fleas and zebrafish. In most cases, the data sets could be adequately described with any of the toxicity modules, and no single module gave superior fits to all data sets. We therefore propose that for many applications, it is reasonable to use the most general and parameter sparse module, i.e. module 3 that assumes similar effects on feeding and maintenance, as a default. For one example (water fleas), we use parameter estimates to calculate the impact of food availability and toxicant levels on the long term population growth rate. Keywords Toxicity modeling - DEBtox - Dynamic energy budgets - Sublethal effects
机译:我们开发和测试了一个通用的建模框架,通过将毒性模块添加到已建立的动态能量预算(DEB)模型中来描述污染物的亚致死作用。 DEB模型描述了各个生物体获取和消耗能量的比率;毒性模块描述了有毒物质如何通过更改一个或多个DEB参数的值(特别是量化喂养和维持速率的参数)来影响这些速率。我们研究了四个毒性模块,这些模块假定:(1)仅对摄食有影响; (2)仅对维护产生影响; (3)对毒性参数的相似值对饲养和维持的影响; (4)不同毒性参数值对饲喂和维持的影响。我们通过将每种毒性模块拟合到有关进食,呼吸,生长和繁殖的公开数据来测试毒性模块。被测试的污染物包括金属(汞和铜)和各种有机化合物(氯酚,甲苯,多环芳烃,丁二酚和吡啶);生物包括贻贝,牡蛎,worm,水蚤和斑马鱼。在大多数情况下,可以使用任何毒性模块充分描述数据集,并且没有单个模块可以对所有数据集提供出色的拟合度。因此,我们建议,对于许多应用,默认情况下使用最通用且参数最稀疏的模块是合理的,即模块3对进料和维护的影响类似。举一个例子(水蚤),我们使用参数估计来计算食物供应量和有毒物质水平对长期人口增长率的影响。毒性建模-DEBtox-动态能量收支-亚致死作用

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号