Digital survey and reconstruction for enhancing epigraphic readings with erode surface

Author:

Limongello M,Antinozzi S,Vecchio L,Fiorillo F

Abstract

Abstract The contribution illustrates the applied procedure of the digital survey and documentation of a funerary epigraph written in Greek but dating back to the Roman period (dimensions of about 31 cm x 20 cm). It comes from Velia (Salerno), a Greek and then Roman city in southern Italy. It was found in 1967 and currently represents the only Greek funerary inscription of the Roman period coming, most probably, from the necropolis of Porta Marina Sud. The inscription presents many gaps and preserves only part of the upper right and lower margins. The surface is highly eroded, maybe due to the exposure to atmospheric agents, making the text interpretation extremely difficult. The implemented image-based and range-based techniques contributed to reading the inscriptions, letting to recover much information that was invisible to the naked eye. The 3D survey system choice has to be consistent with the work aims and the physical object characteristics. A high degree of geometric detail was essential for our case study. Therefore, a triangulation laser scanner performed the first digital capturing, subsequently integrated with a structured light system (Artec Eva and Leo) and finally, a close-range photogrammetric acquisition to produce a high-resolution orthophoto.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference7 articles.

1. Contributions of the digital photogrammetry and 3D modelling of Roman inscriptions to the reading of damaged tituli: An example from the Hispania Tarraconensis (Castiliscar, Saragossa);Andreu;Digital Applications in Archaeology and Cultural Heritage,2019

2. New hypotheses and interpretations regarding the Longobard Basin in the “Jerusalem” of Bologna supported by 3D surveying methodologies;Bitelli;Journal of Cultural Heritage,2020

3. Techniques for revealing 3D hidden archeological features: morphological residual models as virtual-polynomial texture maps;Pires,2015

4. Shining 3D Einscan-Pro, application and validation in the field of cultural heritage, from the Chillida-Leku Museum to the archaeological Museum of Sarno;Morena,2019

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