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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >An applied complementary use of macro X-ray fluorescence scanning and multi-light reflectance imaging to study Medieval Illuminated Manuscripts. The Rijmbijbel of Jacob van Maerlant
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An applied complementary use of macro X-ray fluorescence scanning and multi-light reflectance imaging to study Medieval Illuminated Manuscripts. The Rijmbijbel of Jacob van Maerlant

机译:宏X射线荧光扫描和多光反射成像的应用补充使用,研究中世纪照明手稿。 雅各布van maerlant的rijmbijbel

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The colorful images in medieval manuscripts have striking characteristics that need meticulous approaches during art technical research in situ, as no sampling is permitted. Visual inspections and images with the microscope can reveal details about techniques and layers of the miniature. In this experimental research we applied two complementary techniques to reveal the pigments the artists used to create the folios of a famous Flemish illuminated manuscript, the Rijmbijbel of Jacob van Maerlant (13th century, Bruges). This essay emphasizes on the combined possibilities and advantages of two different approaches. It focuses on exploring the same illuminations with MA-XRF analyses in a lab environment and the multi-light reflectance technique (MLR) of the Multi-Spectral Microdome (MS MicroD) in situ. Through comparing and combining MA-XRF analysis with the MS MicroD datasets reference data, the ink and paint layer compositions could be characterized. The essay illustrates the capabilities of both techniques to obtain new insights in the material composition of the paint of a well-described and examined artefact. The genuine 13th century materials and the 19th century retouching could be visualized, differentiated and determined. Finally, the added value of the combination of the two examination methods is evaluated for art technical research on illuminated manuscripts.
机译:中世纪稿件中的彩色图像具有醒目的特征,在艺术技术研究期间需要细致的方法,因为不允许采样。具有显微镜的视觉检查和图像可以透露关于微型技术和层的细节。在这个实验研究中,我们应用了两种互补技术,揭示了艺术家用于创造着名佛兰芒的艺术作品的颜料,雅各布van Maerlant(13世纪,布鲁日)的rijmbijbel。本文强调了两种不同方法的综合可能性和优势。它侧重于在实验室环境中探索与MA-XRF分析的相同照明和MA-XRF分析,以及原位的多光谱微量(MS Microd)的多光反射技术(MLR)。通过使用MS Microd数据集参考数据进行比较和组合MA-XRF分析,可以表征油墨和涂料层组合物。本文说明了这两种技术的能力,以获得良好描述的和检查的人工制品的涂料的材料组成中的新见解。真正的13世纪材料和19世纪的修饰可以可视化,差异化和确定。最后,评估了两种检查方法的组合的附加值,用于艺术技术研究对照明手稿。

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