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Title SHREC 2026: Reconstruction of High-Frequency Geometry in Synthetic Heritage
Authors Cristian Llull, Iván Sipirán, Francisca Gil, Nelson Baloian, Anthony Belessis, Vlassis Fotis, George Ioannakis, Efthymios Koukoulis, Konstantinos Moustakas, Sotiris Papatheodorou, Ioannis Pratikakis, Ioannis Romanelis, Kriti Singh, Eleftheria Solomonidi, Christoforos Vlachos, Vaia Zachari
Publication date October 2026
Abstract The geometric evaluation of 3D reconstruction techniques,
spanning from classical structure-from-motion (SfM) to contemporary neural
implicit representations and Gaussian splatting, remains a challenge. In
cultural heritage applications, the preservation of high-frequency surface
details, such as tool marks, inscriptions and reliefs, is often of greater
significance than global shape approximation. Traditional metrics, notably
the Chamfer Distance (CD), are frequently inadequate as their reliance on
global error averaging masks the loss of critical micro-topography. To
address this, in this Shape Retrieval Challenge (SHREC) track we introduce a
novel benchmarking framework comprising: (1) a controlled, procedurally
generated synthetic dataset of Khachkar-inspired stone reliefs, fully
reproducible; and (2) the Feature-Aware Chamfer Distance (FACD), a
feature-aware distance function designed to prioritize structurally and
significantly geometric features. Three teams each submitted one run, and
the organizers contributed five baseline reconstructions, for a total of
eight configurations evaluated under a common protocol. Our evaluation
reveals that standard CD frequently misranks models by favoring global
smoothness over detail preservation. By providing more archaeologically
plausible assessments, our FACD reveals a persistent fidelity gap, showing
that current state-of-the-art methods still lack the nuance required for
feature optimization.
Pages article 104726
Volume 139
Journal name Computers & Graphics
Publisher Elsevier Science (Amsterdam, The Netherlands)
Reference URL View reference page