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An alternative method of particulate fluorescent tracer analysis in sediments using a microplate fluorimeter

机译:使用微孔板荧光计分析沉积物中颗粒荧光示踪剂的另一种方法

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摘要

Conservative particulate fluorescent tracers (e.g. luminophores and microspheres) are commonly used in a wide range of sediment transport studies. Traditionally, their spatial redistribution is estimated by counting them in sediments under ultraviolet light (e.g. by epifluorescence microscopy), a time-consuming but effective method. While alternative methods have recently been developed (e.g. photodetection, digital image analyses), this 'classical' counting method remains the most commonly used. This article describes an alternative procedure for measuring the concentration of fluorescent tracers (here, microspheres) using a microplate fluorimeter. This technique enables simultaneous analysis of numerous samples while reducing the sediment preparation and quantification time. After a calibration step from sediment samples with known microsphere content, the method was validated by comparing results from the epifluorescence microscopy method. Different adjustments were also reported, as well as application examples. The different calibration tests showed high linear relationships between the microsphere concentration of sediment samples and the measured fluorimetric intensities (R~2~0.99) with a detection limit of 6%. In comparison with the previously used method, very similar results were obtained, as illustrated in recent studies using both luminophores and microspheres. The rapid and reliable method proposed here will enable increasingly complex experiments to be performed with less time-consuming qualitative analyses.
机译:保守的颗粒荧光示踪剂(例如发光体和微球)通常用于广泛的沉积物迁移研究中。传统上,通过在紫外线下(例如通过落射荧光显微镜)在沉积物中对它们进行计数来估算其空间重新分布,这是一种耗时但有效的方法。尽管最近已经开发出替代方法(例如,光电检测,数字图像分析),但是这种“经典”计数方法仍然是最常用的方法。本文介绍了使用微孔板荧光计测量荧光示踪剂(此处为微球)浓度的替代方法。该技术可以同时分析大量样品,同时减少沉积物的制备和定量时间。在对已知微球含量的沉积物样品进行校准后,通过比较落射荧光显微镜法的结果对方法进行了验证。还报告了不同的调整以及应用示例。不同的校准测试表明,沉积物样品的微球浓度与测得的荧光强度(R〜2〜0.99)之间具有高度线性关系,检出限为6%。与先前使用的方法相比,获得了非常相似的结果,如最近使用发光体和微球体进行的研究所示。本文提出的快速而可靠的方法将使耗时更少的定性分析能够执行越来越复杂的实验。

著录项

  • 来源
    《Environmental Technology》 |2011年第6期|p.551-560|共10页
  • 作者单位

    Laboratoire de Radioecologie et d'Ecotoxicologie, Institut de Radioprotection et de Surete Nucleaire, DEI/SECRE/LRE, Saint Paul Lez Durance, France;

    Laboratoire de Radioecologie et d'Ecotoxicologie, Institut de Radioprotection et de Surete Nucleaire, DEI/SECRE/LRE, Saint Paul Lez Durance, France;

    EcoLab, Laboratoire d'Ecologie Fonctionnelle, UMR 5245 CNRS//INP/Universite Paul Sabatier,Toulouse, France;

    MAD-Environnement (Modelling and Analysis of Data in Environment), Gradignan, France;

    Laboratoire de Microbiologie, Geochimie et Ecologie Marines, UMR 6117 CNRS/COM/Universite de la Mediterranee, Marseilles, France;

    Laboratoire de Radioecologie et d'Ecotoxicologie, Institut de Radioprotection et de Surete Nucleaire, DEI/SECRE/LRE, Saint Paul Lez Durance, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bioturbation; fluorimetry; epifluorescence microscopy; microspheres; luminophores;

    机译:生物扰动荧光法荧光显微镜微球发光体;

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