In this work we present a dual-mode mid-infrared workflow [6], for detecting sub-superficial mural damages in frescoes artworks. Due to the large nature of frescoes, multiple thermal images are recorded. Thus, the experimental setup may introduce measurements errors, seen as inter-frame changes in the image contrast, after mosaicking. An approach to lowering errors is to post-process the mosaic [10] via osmosis partial differential equation (PDE) [12, 13], which preserves details, mass and balance the lights: efficient numerical study for osmosis on large images is proposed [2, 11], based on operator splitting [8]. Our range of Cultural Heritage applications include the detection of sub-superficial voids in Monocromo (L. Da Vinci, Castello Sforzesco, Milan) [5], the light-balance for multi-spectral imaging and the data integration on the Archimedes Palimpsest [10].
翻译:在这项工作中,我们展示了一种双模式中红外线工作流程[6],用于探测纤维壁画中的次超声波损害[6]。由于壁画的庞大性质,记录了多种热图像。因此,实验设置可能引入测量错误,在磨损后,将这种测量错误视为图像对比的跨框架变化。降低错误的方法是通过宇宙部分差异方程(PDE)[12、13]处理后马赛克[10],该方程保存了细节、质量和平衡灯光:根据操作者分裂[8],提议对大型图像的渗透进行有效的数字研究[2、11]。我们的文化遗产应用范围包括探测单体(L. Dawichi、Castello Sforzesco、Milan)[5]、多光谱成像的光平衡和Achmimedes Palimpsest [10]的数据整合。