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Segmentation, Reconstruction, and Visualization of Ancient Inscriptions in 2.5D

机译:2.5D中古代铭文的分割,重建和可视化

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摘要

This article presents a new algorithm for the automated reconstruction and visualization of damaged ancient inscriptions. After reviewing current methods for enhancing incisions, a hybrid approach is adopted that combines advantages of 2D and 3D analytical techniques. A photogrammetric point cloud of an inscription is projected orthographically from an ideal vantage point, generating a 2.5D raster, including channels describing depth and surface derivatives. The next consideration is the obstacle to legibility posed by breaks in the ancient surface, which motivates the development of a new segmentation algorithm based on SLIC superpixels with region-merging adapted to operate on the geometry of the inscribed surface instead of color or intensity values. The algorithm classifies surface points by their likelihood of belonging to the uninscribed original plane, deliberate strokes, or breaks. Results are visualized in a manner suited for epigraphical analysis and publication through static images. Two case studies demonstrate the power and flexibility of this method, which has indicated changes to the reading of IG XIV 1, an early Greek text that has been debated for more than 150 years.
机译:本文提出了一种新的古代铭文自动重建和可视化的新算法。在审查用于增强切口的当前方法后,采用混合方法,以结合2D和3D分析技术的优势。铭文的摄影测量点云从理想的有利程点划分地投射,产生2.5d栅格,包括描述深度和表面衍生物的通道。下一个考虑是古代表面中断易读的障碍,这激励了基于具有区域合并的基于切片超像素的新分割算法的开发,该区域合并适于在铭刻表面的几何形状上而不是颜色或强度值。该算法通过属于未计算的原始飞机,故意中风或休息的可能性来分类表面点。结果是通过静态图像的出版物的方式可视化。两种案例研究表明了这种方法的力量和灵活性,这表明对IG XIV 1的阅读变化,这是一个已经争论超过150年的早期希腊文本。

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