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Mapping the opacity of paint layers in paintings with coloured grounds using optical coherence tomography

机译:使用光学相干断层扫描绘制绘画层的涂料层的不透明度

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Optical diagnostics techniques are becoming important for technical art history (TAH) as well as for heritage conservation. In recent years, optical coherence tomography (OCT) has been increasingly used as a novel technique for the inspection of artwork, revealing the stratigraphy of paintings. It has also shown to be an effective tool for vanish layer inspection. OCT is a contactless and non-destructive technique for microstructural imaging of turbid media, originally developed for medical applications. However current OCT instruments have difficulty in paint layer inspection due to the opacity of most pigments. This paper explores the potential of OCT for the investigation of paintings with coloured grounds. Depth scans were processed to determine the light penetration depth at the optical wavelength based on a 1/e light attenuation calculation. The variation in paint opacity was mapped based on the microstructural images and 3D penetration depth profiles was calculated and related back to the construction of the artwork. By determining the light penetration depth over a range of wavelengths the 3D depth perception of a painting with coloured grounds can be characterized optically.
机译:光学诊断技术对于技术艺术历史(TAH)以及遗产保护越来越重要。近年来,光学相干断层扫描(OCT)越来越多地用作艺术品检查的新技术,揭示了绘画的层层。它也显示为消白层检查的有效工具。 OCT是一种非接触式和非破坏性的浑浊介质微观结构成像技术,最初为医疗应用开发。然而,由于大多数颜料的不透明性,目前的OCT仪器难以涂漆层检查。本文探讨了OCT的潜力,为彩色地面绘画调查。处理深度扫描以基于1 / E光衰减计算确定光波长处的光穿透深度。基于微结构图像和3D穿透深度剖面映射了涂料不透明度的变化,并返回艺术品的构造。通过确定在一系列波长范围内的光穿透深度,可以光学地表征与彩色地面的3D深度感知涂漆。

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