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Technique Based on LED Multispectral Imaging and Multivariate Analysis for Monitoring the Conservation State of the Dead Sea Scrolls

机译:基于LED多光谱成像和多元分析的死海古卷保护状况监测技术

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摘要

The aim of this project is the development of a noninvasive technique based on LED multispectral imaging (MSI) for monitoring the conservation state of the Dead Sea Scrolls (DSS) collection. It is well-known that changes in the parchment reflectance drive the transition of the scrolls from legible to illegible. Capitalizing on this fact, we will use spectral imaging to detect changes in the reflectance before they become visible to the human eye. The technique uses multivariate analysis and statistical process control theory. The present study was carried out on a "sample" parchment of calfskin. The monitoring of the surface of a commercial modern parchment aged consecutively for 2 h and 6 h at 80 deg C and 50percent relative humidity (ASTM) was performed at the Imaging Lab of the Library of Congress (Washington, DC, U.S.A.). MSI is here carried out in the vis--NIR range limited to 1 (mu)m, with a number of bands of 13 and bandwidths that range from about 10 nm in UV to 40 nm in IR. Results showed that we could detect and locate changing pixels, on the basis of reflectance changes, after only a few "hours" of aging.
机译:该项目的目的是开发一种基于LED多光谱成像(MSI)的无创技术,用于监测死海古卷(DSS)的保护状态。众所周知,羊皮纸反射率的变化会导致滚动从清晰到模糊的过渡。充分利用这一事实,我们将使用光谱成像技术来检测反射率的变化,然后使其对人眼可见。该技术使用多元分析和统计过程控制理论。本研究是在小牛皮的“样本”羊皮纸上进行的。在美国国会图书馆的成像实验室(美国华盛顿特区)上对在80摄氏度和50%相对湿度(ASTM)下连续老化2小时和6小时的商用现代羊皮纸的表面进行监测。 MSI在vis-NIR范围内被限制为1μm,具有13个波段,带宽范围从UV的约10 nm到IR的40 nm。结果表明,仅在几小时的老化后,我们就可以根据反射率的变化来检测和定位变化的像素。

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