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Assessing potential health risks to fish and humans using mercury concentrations in inland fish from across western Canada and the United States

机译:利用加拿大西部和美国内陆鱼类的汞含量评估对鱼类和人类的潜在健康风险

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摘要

Fish represent high quality protein and nutrient sources, but Hg contamination is ubiquitous in aquatic ecosystems and can pose health risks to fish and their consumers. Potential health risks posed to fish and humans by Hg contamination in fish were assessed in western Canada and the United States. A large compilation of inland fish Hg concentrations was evaluated in terms of potential health risk to the fish themselves, health risk to predatory fish that consume Hg contaminated fish, and to humans that consume Hg contaminated fish. The probability that a fish collected from a given location would exceed a Hg concentration benchmark relevant to a health risk was calculated. These exceedance probabilities and their associated uncertainties were characterized for fish of multiple size classes at multiple health-relevant benchmarks. The approach was novel and allowed for the assessment of the potential for deleterious health effects in fish and humans associated with Hg contamination in fish across this broad study area. Exceedance probabilities were relatively common at low Hg concentration benchmarks, particularly for fish in larger size classes. Specifically, median exceedances for the largest size classes offish evaluated at the lowest Hg concentration benchmarks were 0.73 (potential health risks to fish themselves), 0.90 (potential health risk to predatory fish that consume Hg contaminated fish), and 0.97 (potential for restricted fish consumption by humans), but diminished to essentially zero at the highest benchmarks and smallest fish size classes. Exceedances of benchmarks are likely to have deleterious health effects on fish and limit recommended amounts of fish humans consume in western Canada and the United States. Results presented here are not intended to subvert or replace local fish Hg data or consumption advice, but provide a basis for identifying areas of potential health risk and developing more focused future research and monitoring efforts.
机译:鱼类代表着高质量的蛋白质和营养来源,但汞的污染在水生生态系统中无处不在,可能对鱼类及其消费者构成健康风险。加拿大西部和美国评估了鱼类中汞污染对鱼类和人类的潜在健康风险。根据对鱼类本身的潜在健康风险,食用受汞污染的鱼类的掠食性鱼类以及食用受汞污染的鱼类的人类的健康风险,对大量内陆鱼的汞浓度进行了评估。计算了从给定位置收集的鱼超过与健康风险相关的汞浓度基准的可能性。这些超标概率及其相关的不确定性在多个与健康相关的基准上针对多种尺寸类别的鱼进行了表征。该方法是新颖的,可用于评估在这个广泛研究区域中与鱼类中汞污染相关的鱼类和人类健康危害的潜在可能性。在低汞浓度基准下,超标概率相对常见,特别是对于较大规格鱼类而言。具体来说,在最低汞含量基准下评估的最大规格鱼类的中位数超标分别为0.73(对鱼类本身的潜在健康风险),0.90(对食用被Hg污染的鱼类的掠食性鱼类的潜在健康风险)和0.97(受限鱼类的潜在风险)人类食用),但在最高基准和最小鱼类规格下减少至基本为零。超过基准可能会对鱼类造成有害的健康影响,并限制加拿大西部和美国人类建议食用的鱼类数量。此处提供的结果无意于颠覆或替代当地鱼的汞数据或食用建议,而是提供了基础,以识别潜在的健康风险领域,并开展更有针对性的未来研究和监测工作。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|342-354|共13页
  • 作者单位

    Colorado Parks and Wildlife, 317 West Prospect Rd., Fort Collins, CO 80526, United States;

    U.S. Geological Survey, Colorado Cooperative Fish and Wildlife Research Unit, Department of Fish, Wildlife, and Conservation Biology, Department of Statistics, Colorado State University, 1484 Campus Delivery, Fort Collins, CO 80523, United States;

    U.S. Geological Survey, Forest and Rangeland Ecosystem Science Center, 3200 SW Jefferson Way, Corvallis, OR 97331, United States;

    U.S. Geological Survey, Wisconsin Water Science Center, 8505 Research Way, Middleton, WI 53562, United States;

    U.S. Geological Survey, Wisconsin Water Science Center, 8505 Research Way, Middleton, WI 53562, United States;

    U.S. Geological Survey, Dixon Field Station, 800 Business Park Drive, Dixon, CA 95620, United States;

    U.S. Geological Survey, Forest and Rangeland Ecosystem Science Center, 3200 SW Jefferson Way, Corvallis, OR 97331, United States;

    Oregon State University, Department of Fisheries and Wildlife, 104 Nash Hall, Corvallis, OR 97331, United States;

    Biodiversity Research Institute, 276 Canco Road, Portland, ME 04103, United States;

    University of Wisconsin La Crosse, River Studies Center, 1725 State Street, La Crosse, WI 54601, United States;

    National Park Service, Air Resources Division, PO Box 25287, Denver, CO 80225, United States;

    San Francisco Estuary Institute, 4911 Central Ave, Richmond, CA 94804, United States;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Advisory development; Benchmark; Consumption advice; Hierarchical modeling; Monitoring; Size class; Uncertainty;

    机译:咨询开发;基准;消费建议;分层建模;监控;尺寸等级;不确定;

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