首页> 外文会议>Conference on optics for arts, architecture, and archaeology V >Mid-infrared thermal imaging for an effective mapping of surface materials and sub-surface detachments in mural paintings: integration of thermography and thermal quasi-reflectography
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Mid-infrared thermal imaging for an effective mapping of surface materials and sub-surface detachments in mural paintings: integration of thermography and thermal quasi-reflectography

机译:中红外热成像,用于壁画绘画表面材料和子表面脱离的有效映射:热成像和热准反射谱的整合

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Cultural Heritage is discovering how precious is thermal analysis as a tool to improve the restoration, thanks to its ability to inspect hidden details. In this work a novel dual mode imaging approach, based on the integration of thermography and thermal quasi-reflectography (TQR) in the mid-IR is demonstrated for an effective mapping of surface materials and of sub-surface detachments in mural painting. The tool was validated through a unique application: the "Monocromo" by Leonardo da Vinci in Italy. The dual mode acquisition provided two spatially aligned dataset: the TQR image and the thermal sequence. Main steps of the workflow included: 1) TQR analysis to map surface features and 2) to estimate the emissivity; 3) projection of the TQR frame on reference orthophoto and TQR mosaicking; 4) thermography analysis to map detachments; 5) use TQR to solve spatial referencing and mosaicking for the thermal-processed frames. Referencing of thermal images in the visible is a difficult aspect of the thermography technique that the dual mode approach allows to solve in effective way. We finally obtained the TQR and the thermal maps spatially referenced to the mural painting, thus providing the restorer a valuable tool for the restoration of the detachments.
机译:文化遗产正在发现珍贵的热分析是改善恢复的工具,因为它能够检查隐藏细节。在这项工作中,基于MID-IR中的热成像和热法准反射凝(TQR)的集成的新型双模成像方法是为了有效地绘制表面材料和壁画中的子表面脱离。该工具通过独特的应用程序验证:意大利Leonardo da Vinci的“Monocromo”。双模式采集提供了两个空间对齐的数据集:TQR图像和热序列。工作流程的主要步骤包括:1)TQR分析地图表面特征和2)估计发射率; 3)TQR框架的投影参考矫形器和TQR MOSAICKING; 4)热成像分析来映射脱离; 5)使用TQR来解决热处理框架的空间引用和摩托车。可见光中的热图像参考是热成像技术的难度方面,即双模式方法允许以有效的方式解决。我们终于获得了TQR和在空间上引用的TQR和热贴图,从而为恢复器提供了用于恢复脱离的有价值的工具。

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