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Spectral Imaging of Matisse's Pot of Geraniums: A Case Study

机译:Matisse of Geraniums的光谱成像:一个案例研究

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The accuracy of color image-acquisition systems is most often evaluated using test targets of uniform color patches imaged under optimal conditions. In artwork imaging, system performance is judged visually, comparing the art with images rendered for display or print. Because the surface properties of the art may not be uniform, the spectral properties of the pigments may be different than the test targets, the sizes may be different, renderings are often metameric to the art, taking and viewing lighting geometries may be different, and the museum observers are more experienced than scientists in judging color accuracy visually, color accuracy as determined on a visual basis may be quite different than target performance. Therefore, an experiment was performed where a spectral-imaging system, designed for scientific purposes under laboratory conditions, was taken to a museum and tested in its photographic and conservation departments. The work of art evaluated was Henri Matisse's Pot of Geraniums. Spectral and colorimetric comparisons were made between in situ small aperture spectrophotometry and imaging. The average performance was 3.7ΔE_(00) and 3.1% spectral RMS; this was similar to an independent verification target of typical artist pigments applied to a canvas board. Viewed in close up, this level of accuracy yielded reasonable color matching for images rendered for display and print. Viewed overall, the matching quality worsened, a result of using diffuse lighting during image acquisition. Renderings appeared "flat" and reduced in perceived contrast. This indicates that when creating an image archive for both scientific and visual purposes, it will be necessary to use both directional and diffuse lighting geometries.
机译:彩色图像采集系统的准确性最常使用在最佳条件下成像的均匀颜色贴片的测试目标进行评估。在图稿成像中,系统性能在视觉上判断,比较呈现用于显示或打印的图像的艺术。因为本领域技术的表面特性可能不均匀,所以颜料的光谱特性可以与测试目标不同,尺寸可以是不同的,渲染通常是最热的,采取和观察照明几何形状可以不同,并且博物馆观察者比科学家在视觉上的判断颜色精度方面更有经验,如视觉所确定的颜色准确度可能与目标性能相比不同。因此,在实验室条件下设计用于科学目的的光谱成像系统,在实验室条件下被施加到博物馆,并在其摄影和保护部门进行了实验。艺术作品评价是Henri Matisse的天竺葵。在原位小孔径分光光度法和成像之间进行光谱和比较比较。平均性能为3.7ΔE_(00)和3.1%光谱RMS;这类似于应用于帆布板的典型艺术家颜料的独立验证目标。在关闭时观看,这种精度水平会产生合理的颜色匹配,用于显示和打印的图像。总体而言,匹配质量恶化,在图像采集期间使用漫射照明的结果。渲染表现出现“平坦”,并在感知对比中减少。这表明,当为科学和视觉目的创建图像存档时,需要使用方向和漫射照明几何形状。

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