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Investigation of an Egyptian Mummy board by Using Clinical Multi-slice Computed Tomography

机译:使用临床多层计算机断层扫描技术对埃及木乃伊板的调查

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A modern approach to the diagnosis of artistic heritage makes use of non-destructive techniques which avoid damage to artworks or signs of interaction with the analytical technique used. For this reason, today, the employment of X-rays to study artistic heritage is quite widespread. Computed tomography (CT) Imaging was first used as specialized medical diagnostic tool in the early 1970s. Today, CT scanners have become more common, and non-destructive three-dimensional imaging has found an increasing number of uses in different areas such as materials research, geology, archaeology, and museum conservation. In this work, a new generation of clinical CT (based on the Dual Energy and multi-slice acquisition principle) is used to investigate an Egyptian wooden mummy board with a total acquisition time of 93.23 seconds and a voxel size of 0.078x0.078x1.5mm. The use of two distinct techniques of image post-processing, the two-dimensional multi-planar reconstruction (MPR) and the three-dimensional volume rendering technique (VRT) allowed us to: evaluate the state of conservation of the mummy board, determine how the wooden object was implemented, recognize a nineteenth-century intervention of consolidation, and advance the hypothesis that the wooden planks were reused. In particular, we highlight the use of the cardiovascular and pulmonary filter with VRT reconstruction, which allows a virtual elimination of different parts of the mummy board to investigate those areas otherwise accessible only by removing parts of the board and thus damaging the work.
机译:诊断艺术遗产的现代方法是使用非破坏性技术,以避免损坏艺术品或与使用的分析技术发生相互作用的迹象。由于这个原因,今天,使用X射线研究艺术遗产的情况已经相当普遍。计算机断层扫描(CT)成像在1970年代初首次用作专门的医学诊断工具。如今,CT扫描仪已变得越来越普遍,无损三维成像在诸如材料研究,地质,考古和博物馆保护等不同领域中发现了越来越多的用途。在这项工作中,新一代临床CT(基于双重能量和多切片采集原理)用于研究埃及木乃伊板,其总采集时间为93.23秒,体素大小为0.078x0.078x1。 5毫米使用两种不同的图像后处理技术,二维多平面重建(MPR)和三维体积渲染技术(VRT),我们可以:评估木乃伊板的保存状态,确定如何实施了木制对象,认识到19世纪的固结干预,并提出了木板被重用的假设。特别是,我们着重介绍了将心血管过滤器和肺部过滤器与VRT重建配合使用的方法,该技术可以虚拟消除木乃伊板的不同部分,以调查那些本应通过拆除板子的某些部分才能进入的区域,从而破坏工作。

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