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Use of exposure time and life expectancy in models for toxicity to aquatic organisms

机译:暴露时间和预期寿命在对水生生物毒性模型中的使用

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The exposure time is a variable which is usually not incorporated into models for toxicity. However, with persistent organic pollutants (POPs) exhibiting a nonspecific mode of action and lipophilic properties this variable can be modeled by the usage of the internal concentrations as a measure of the toxicity with fish. The bioconcentration process with fish is a relatively well understood and predictable process which allows the calculation of the internal lethal concentration. When the exposure time is relatively short the critical internal lethal concentrations are relatively constant for the group of POPs whereaas the LC50 measured in the ambient water is quite variable. When the exposure time is relatively long, results on the measurement of the critical internal concentration with fish over different exposure times has demonstrated that the internal lethal concentration falls with increasing exposure times in a consistent and predictable manner. This reduction in life expectancy can be described in a model which can be used to estimate the critical internal concentration for any exposure time. It also provides information useful in assessing the risk to fish and potentially other species due to the occurrence of residues of POPs in natural aquatic systems. It is suggested that these relationships can be extended to other groups of organisms and chemicals.
机译:暴露时间是一个变量,通常不会纳入毒性模型中。但是,在持久性有机污染物(POPs)表现出非特定的作用方式和亲脂性的情况下,可以通过使用内部浓度作为对鱼类毒性的量度来对该变量进行建模。鱼的生物浓缩过程是一个相对容易理解和可预测的过程,可以计算内部致死浓度。当暴露时间相对较短时,这组持久性有机污染物的临界内部致死浓度相对恒定,而在环境水中测得的LC50则变化很大。当暴露时间相对较长时,在不同暴露时间下鱼类体内关键内部浓度的测量结果表明,内部致死浓度随着暴露时间的增加而以一致且可预测的方式下降。预期寿命的减少可在模型中描述,该模型可用于估计任何暴露时间的临界内部浓度。它还提供了有用的信息,可用于评估由于自然水生系统中持久性有机污染物的残留而对鱼类和其他潜在物种造成的风险。建议将这些关系扩展到其他类别的生物和化学物质。

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