用三维建模与多光谱成像还原古罗马雕像原貌色彩。
Multispectral 3D mapping on a Roman sculpture to study ancient polychromy
- 基于可见光与紫外荧光成像构建高精度3D模型。
- 通过像素级纹理对齐,实现颜色分布的精准映射。
- 助力文物保护,适合艺术史与考古研究者使用。
关于古希腊罗马雕塑彩绘的研究近年兴起,提出古代雕塑原为彩色而非纯白。多光谱与多模态成像技术在揭示微弱痕迹上的彩绘方面至关重要。反射与荧光成像可识别不同材料并映射不均匀性,指导后续拉曼、X射线荧光及傅里叶变换红外光谱(FTIR)分析。然而,传统方法可能低估复杂表面的原始彩绘范围。本研究提出一种新方法:利用基于现实的3D模型,融合非肉眼可见纹理,重现雕塑原始外观。采用可见光反射成像(VIS)与紫外激发荧光成像(UVF),通过摄影测量法构建3D模型。经原始数据处理,不同光源拍摄图像成功对齐,生成单一3D模型,并将多组纹理映射至同一二维空间。像素级对应关系支持分类算法直接应用于3D表面,帮助保护者深入理解文物保存状态,细致观察材料分布,并关联几何结构数据。研究以意大利格罗塞托马雷玛考古艺术博物馆(MAAM)收藏的古罗马女神阿尔忒弥斯雕像为例进行实验。
原文摘要 · Abstract (English)
Research into the polychromy of Greek and Roman sculptures has surged to explore the hypothesis that ancient sculptures were originally not pristine white but adorned with colors. Multispectral and multimodal imaging techniques have been crucial in studying painted surfaces, revealing polychromies even in traces. In fact, imaging techniques, such as reflectance and fluorescence, can identify different materials and map inhomogeneities, guiding further investigations such as Raman, XRays Fluorescence, and Fourier Transform InfraRed Spectroscopy (FTIR) to investigate residual colors. However, this approach may underestimate the original polychromies' extent over the complex articulation of a sculptured surface. This study proposes a methodology to analyze the original appearance of ancient sculptures using reality-based 3D models with textures not limited to those visible to the naked eye. We employ Visible Reflected Imaging (VIS) and Ultraviolet-induced Fluorescence Imaging (UVF). From the UVF and VIS datasets, the underlying 3D model is built by means of photogrammetry. Through raw data processing, images taken with different illuminating sources are successfully aligned and processed, creating a single 3D model with multiple textures mapped onto the same bi-dimensional space. The pixel-to-pixel correspondence of different textures allows for the implementation of a classification algorithm that can directly map its outcome onto the 3D model surface. This enables conservators to deepen their understanding of artifact preservation, observe mate-rial distribution in detail, and correlate this with 3D geometrical data. In this study, we experiment with this approach on an ancient Roman sculpture of Artemis, conserved at the Archeological and Art Museum of Maremma (MAAM) in Grosseto, Italy.
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