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首页> 外文期刊>Environmental Monitoring and Assessment >Development of fish age normalization technique for pollution assessment of marine ecosystem, based on concentrations of mercury, copper, and zinc in dorsal muscles of fish
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Development of fish age normalization technique for pollution assessment of marine ecosystem, based on concentrations of mercury, copper, and zinc in dorsal muscles of fish

机译:基于鱼类浓度,铜和鱼类背部肌肉浓度的海洋生态系统污染评估鱼龄算法的发展

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Correlation between metal concentrations in fish tissues and fish body size poses certain challenge when comparing concentration levels encountered at different locations or time periods by degrading performance of statistical tests due to variable age composition of fish sample pool. In order to overcome this, the concentrations of Hg, Cu, and Zn, measured in tissues of five fish species, were normalized to selected age group. Computed species-specific equations, based on empirically obtained exponential relationship, provided accurate estimates of the normalized concentrations under the conditions of substantial metal and fish age covariation. Obtained normalized and measured concentrations were then compared among sampling stations by means of commonly used analysis of variance (ANOVA) in combination with Tuckey's HSD test, where 11 out of 18 considered cases showed significant smoothing of the observed differences. The applied method worked well in the case of locally distributed coastal species populations where transformed data allowed clearer separation of spatial areas exhibiting different levels of pollution. At the same time, application of the method on pelagic fish species was less successful due to high mobility of specimens and mixed impact on the population originating from variable pollution levels at different areas of the entire migration region; therefore, attribution of a sample pool to a specific catchment area can cause a bias in assessment results.
机译:当鱼组织和鱼体尺寸的金属浓度与鱼体尺寸之间的相关性在比较不同位置或时间段的浓度水平通过降低统计测试由于鱼类样品池的可变年龄组成而遇到的统计测试的浓度水平。为了克服这一点,在五种鱼类组织中测量的Hg,Cu和Zn的浓度被标准化为选定的年龄组。基于经验获得的指数关系,计算的物种特异性方程提供了在大量金属和鱼龄调节条件下对归一化浓度的准确估计。通过常用的差异(ANOVA)与Tuckey的HSD试验结合使用常用的差异(Anova)进行测定的归一化和测量浓度,其中18例中的11例,其中11例出现了观察到的差异显着平滑。在局部分布的沿海种群的情况下,应用方法良好工作,其中变换数据允许更清晰地分离出现不同污染水平的空间区域。与此同时,由于样品的高迁移率和对源自整个移民区不同地区的可变污染水平的群体的高迁移率和对群体的群体的群体的血液迁移和群体的混合影响,施用该方法的应用更少;因此,对特定集水区的示例池的归因可能导致评估结果中的偏差。

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