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Fiber optic reflectance spectroscopy and hyper-spectral image spectroscopy: two integrated techniques for the study of the 'Madonna dei Fusi'

机译:光纤反射光谱和高光谱图像光谱:“麦当娜·德·富斯”研究的两种综合技术

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Reflectance spectroscopy supplies fundamental information for investigating art objects and diagnosing their state of conservation. Until recently, reflectance spectra could be measured only on samples taken from the art objects. Recent progresses in fiber optics reflectance spectroscopy (FORS) and image spectroscopy (IS) have made it possible, however, to perform non-invasive measurements. Moreover, the two techniques can supply data in large enough quantities as to make the use of sophisticated statistical methods significant for detecting variations due to ageing and degradation. FORS and IS are, in a sense, complementary techniques as the former provides information on single points, while the latter provides 2-D maps from which the reflectance spectrum of each pixel can be displayed. Both FORS and IS were applied in the case study on the Lansdowne version of the Madonna dei fusi (Madonna of the Yarnwinder). In particular, IS was realized by means of a hyper-spectral scanner recently assembled at the "Nello Carrara" Istituto di Fisica Applicata. The characteristics of the scanner are: 0.1 mm spatial sampling over a 1x1 m~2 surface and ~1 nm spectral sampling in the wavelength range from 400 nm to 900 nm. The information provided by these two techniques was consistent with what supplied by the non-invasive techniques employed by the other teams participating in the case study, in particular as regards the pigments, the preparatory layer, the binding medium, and the previous restoration works.
机译:反射光谱法可为调查艺术品和诊断其保存状态提供基本信息。直到最近,反射光谱只能在取自艺术品的样品上进行测量。但是,光纤反射光谱学(FORS)和图像光谱学(IS)的最新进展使得进行非侵入性测量成为可能。而且,这两种技术可以提供足够大量的数据,从而可以利用复杂的统计方法来检测由于老化和退化而引起的变化。从某种意义上说,FORS和IS是互补技术,因为前者提供有关单点的信息,而后者则提供二维图,从中可以显示每个像素的反射光谱。在Lansdowne版本的Madonna dei fusi(Yarnwinder的Madonna)的案例研究中同时应用了FORS和IS。特别地,通过最近在“ Nello Carrara” Istituto di Fisica Applicata组装的高光谱扫描仪来实现IS。扫描仪的特征是:在1x1 m〜2的表面上进行0.1毫米的空间采样,并在400 nm至900 nm的波长范围内进行约1 nm的光谱采样。这两种技术所提供的信息与参与该案例研究的其他团队所采用的非侵入性技术所提供的信息是一致的,特别是在颜料,制备层,结合介质和先前的修复工作方面。

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