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首页> 外文期刊>Regulatory Toxicology and Pharmacology: RTP >Simulation to aid in interpreting biological relevance and setting of population-level protection goals for risk assessment of pesticides
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Simulation to aid in interpreting biological relevance and setting of population-level protection goals for risk assessment of pesticides

机译:有助于解释杀虫剂风险评估的生物相关性和环境的生物学相关性和制定

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摘要

Specific protection goals (SPGs) comprise an explicit expression of the environmental components that need protection and the maximum impacts that can be tolerated. SPGs are set by risk managers and are typically based on protecting populations or functions. However, the measurable endpoints available to risk managers, at least for vertebrates, are typically laboratory tests. We demonstrate, using the example of eggshell thinning in skylarks, how simulation can be used to place laboratory endpoints in context of population-level effects as an aid to setting the SPGs. We develop explanatory scenarios investigating the impact of different assumptions of eggshell thinning on skylark population size, density and distribution in 10 Danish landscapes, chosen to represent the range of typical Danish agricultural conditions. Landscape and timing of application of the pesticide were found to be the most critical factors to consider in the impact assessment. Consequently, a regulatory scenario of monoculture spring barley with an early spray treatment eliciting the eggshell thinning effect was applied using concentrations eliciting effects of zero to 100% in steps of 5%. Setting the SPGs requires balancing scientific, social and political realities. However, the provision of clear and detailed options such as those from comprehensive simulation results can inform the decision process by improving transparency and by putting the more abstract testing data into the context of real-world impacts. (C) 2017 Elsevier Inc. All rights reserved.
机译:具体保护目标(SPG)包括需要保护的环境组件的明确表达,以及可以容忍的最大冲击。 SPG由风险管理人员设定,通常基于保护群体或功能。然而,至少适用于脊椎动物的风险管理人员的可测量端点通常是实验室测试。我们使用Skylarks中的蛋壳变薄的示例来证明,如何使用仿真在人口水平效应的背景下将实验室终点放置为设定SPG。我们制定解释性的情景,调查蛋壳变薄在10丹麦风景中的天窗群体大小,密度和分布的不同假设的影响,选择代表典型的丹麦农业条件范围。发现农药的景观和时机是在影响评估中考虑的最关键因素。因此,使用浓度为0%至100%的浓度为5%的浓度施用蛋壳稀疏效果的早期喷雾处理的单一种质弹簧大麦的监管场景。设置SPG需要平衡科学,社会和政治现实。但是,提供清晰和详细的选项,例如来自综合仿真结果的选择可以通过提高透明度来告知决策过程,并通过将更抽象的测试数据放入现实世界影响的背景下。 (c)2017年Elsevier Inc.保留所有权利。

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