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An approach for determining bioassessment performance and comparability

机译:确定生物评估性能和可比性的方法

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Many organizations in the USA collect aquatic bioassessment data using different sampling and analysis methods, most of which have unknown performance in terms of data quality produced. Thus, the comparability of bioassess-ments produced by different organizations is often unknown, ultimately affecting our ability to make comprehensive assessments on large spatial scales. We evaluated a pilot approach for determining bioassessment performance using macroinverte-brate data obtained from several states in the Southeastern USA. Performance measures evaluated included precision, sensitivity, and responsiveness to a human disturbance gradient, defined in terms of a land disturbance index value for each site, combined with a value for specific conductance, and instream habitat quality. A key finding of this study is the need to harmonize ecore-gional reference conditions among states so as to yield more comparable and consistent bioassessment results. Our approach was also capable of identifying potential areas for refinement such as reevaluation of less precise, sensitive, or responsive metrics that may result in suboptimal index performance. Higher performing bioassessments can yield information beyond "impaired" versus "unimpaired" condition. Acknowledging the limitations of this pilot study, we would recommend that performance evaluations use at least 50 sites. 10 of which are ecoregional reference sites. Efforts should be made to obtain data from the entire human disturbance gradient in an ecoregion to improve statistical confidence in performance measures. Having too few sites will result in an under-representation of certain parts of the disturbance gradient (e.g., too few poor quality sites). which may bias sensitivity and responsiveness estimates.
机译:美国的许多组织都使用不同的采样和分析方法来收集水生生物评估数据,其中大多数方法在产生的数据质量方面表现不明。因此,由不同组织进行的生物评估的可比性通常是未知的,最终影响了我们在大空间尺度上进行综合评估的能力。我们评估了使用从美国东南部几个州获得的大型无脊椎动物数据确定生物评估性能的试验方法。评估的绩效指标包括精度,灵敏度和对人为干扰梯度的响应性,根据每个站点的土地干扰指数值,特定电导率值和河内栖息地质量来定义。这项研究的关键发现是需要协调各州之间的自然参考条件,以产生更可比和一致的生物评估结果。我们的方法还能够识别潜在的需要改进的领域,例如重新评估不太精确,敏感或敏感的指标,这些指标可能导致最佳索引性能。更高性能的生物评估可以产生超出“受损”与“未受损”状况的信息。考虑到该试验研究的局限性,我们建议性能评估至少使用50个站点。其中有10个是生态区域参考点。应该努力从生态区域的整个人类干扰梯度中获取数据,以提高对绩效指标的统计信心。站点太少会导致干扰梯度某些部分的表示不足(例如,质量差的站点太少)。这可能会使敏感性和响应性估计值产生偏差。

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