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Fluorescence lidar technique for the monitoring of biodeteriogens in cultural heritage studies

机译:荧光激光雷达技术在文化遗产研究中监测生物致病菌

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Abstract: Fluorescence techniques have been extensively used for the detection of photoautotrophic organisms. In particular, fluorescence lidars have been successfully employed for the detection and identification of phytoplankton in sea water and, more recently, have been regarded as powerful tools for vegetation monitoring, especially as for the evaluation of forest decline. In this paper the fluorescence lidar technique is proposed as a new tool for the remote monitoring of photoautotrophic biodeteriogens on surfaces of historical monuments. The use of fluorescence lidars can remotely detect photoautotrophic organisms on monuments and, with a suitable spectral resolution, identify the pigments contained into. The advantages of the fluorescence lidar technique with respect to the traditional methods are manifold and can lead to a fast, extensive control of the stony cultural heritage at low cost. Laboratory and lidar experiments were carried out on different stony materials inoculated with microalgal and cyanobacterial species at different cell concentrations to investigate the potentialities of this technique. The experimental results presented in this paper include the remote detection of biodeteriogens on stony materials at a previsual growth stage by means of a fluorescence lidar and the identification of the fluorescence features of different pigments. !20
机译:摘要:荧光技术已被广泛用于检测光自养生物。尤其是,荧光激光雷达已成功地用于海水中浮游植物的检测和鉴定,最近,荧光激光雷达已被认为是用于植被监测的强大工具,尤其是对于森林退化的评估。本文提出了荧光激光雷达技术,作为一种用于远程监测历史古迹表面上的自养生物致死菌的新工具。荧光激光雷达的使用可以远程检测纪念碑上的光合自养生物,并以适当的光谱分辨率识别其中包含的色素。相对于传统方法,荧光激光雷达技术的优点是多方面的,并且可以以低成本快速,广泛地控制石质文化遗产。在接种了不同细胞浓度的微藻和蓝细菌菌种的不同石质材料上进行了实验室和激光雷达实验,以研究该技术的潜力。本文提出的实验结果包括通过荧光激光雷达在视觉前阶段远程检测石质材料上的生物致病菌,并鉴定不同颜料的荧光特征。 !20

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