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Reliability of different sampling densities for estimating and mapping lichen diversity in biomonitoring studies

机译:在生物监测研究中估计和绘制地衣多样性的不同采样密度的可靠性

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Sampling requirements related to lichen biomonitoring include optimal sampling density for obtaining precise and unbiased estimates of population parameters and maps of known reliability. Two available datasets on a sub-national scale in Italy were used to determine a cost-effective sampling density to be adopted in medium-to-large-scale biomonitoring studies. As expected, the relative error in the mean Lichen Biodiversity (Italian acronym: BL) values and the error associated with the interpolation of BL values for (unmeasured) grid cells increased as the sampling density decreased. However, the increase in size of the error was not linear and even a considerable reduction (up to 50%) in the original sampling effort led to a far smaller increase in errors in the mean estimates (<6%) and in mapping (< 18%) as compared with the original sampling densities. A reduction in the sampling effort can result in considerable savings of resources, which can then be used for a more detailed investigation of potentially problematic areas. It is, however, necessary to decide the acceptable level of precision at the design stage of the investigation, so as to select the proper sampling density.
机译:与地衣生物监控有关的采样要求包括最佳采样密度,以获得准确无偏的种群参数估计值和已知可靠性图。意大利使用了两个国家以下规模的可用数据集来确定在中大型生物监测研究中采用的具有成本效益的抽样密度。正如预期的那样,随着采样密度的降低,地衣平均生物多样性(意大利语缩写:BL)值的相对误差以及与(未测量)网格单元的BL值插值相关的误差增加。但是,误差大小的增加不是线性的,甚至原始采样工作的显着减少(最多减少了50%)也导致平均估算值(<6%)和映射图( 18%)。减少采样工作可以节省大量资源,然后可以将其用于对可能存在问题的区域进行更详细的调查。但是,有必要在调查的设计阶段确定可接受的精度水平,以便选择适当的采样密度。

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