Computational Imaging, Centrum Wiskunde & Informatica, Science Park 123, 1098 XG, Amsterdam, The Netherlands.
Conservation and Science Department, Rijksmuseum, Hobbemastraat 22, 1071 ZC, Amsterdam, The Netherlands.
Sci Rep. 2021 May 26;11(1):11024. doi: 10.1038/s41598-021-90135-4.
Dendrochronology is an essential tool to determine the date and provenance of wood from historical art objects. As standard methods to access the tree rings are invasive, X-ray computed tomography (CT) has been proposed for non-invasive dendrochronological investigation. While traditional CT can provide clear images of the inner structure of wooden objects, it requires their full rotation, imposing strong limitations on the size of the object. These limitations have previously encouraged investigations into alternative acquisition trajectories, including trajectories with only linear movement. In this paper, we use such a line-trajectory (LT) X-ray tomography technique to retrieve tree-ring patterns from large wooden objects. We demonstrate that by moving a wooden artifact sideways between the static X-ray source and the detector during acquisition, sharp reconstruction images of the tree rings can be produced. We validate this technique using computer simulations and two wooden test planks, and demonstrate it on a large iconic chest from the Rijksmuseum collection (Amsterdam, The Netherlands). The LT scanning method can be easily implemented in standard X-ray imaging units available at museum research facilities. Therefore, this scanning technique represents a major step towards the standard implementation of non-invasive dendrochronology on large wooden cultural heritage objects.
树木年代学是确定历史艺术文物木材的日期和产地的重要工具。由于标准的获取树木年轮的方法具有侵入性,因此已经提出了 X 射线计算机断层扫描(CT)来进行非侵入性的树木年代学研究。虽然传统的 CT 可以提供木质物体内部结构的清晰图像,但它需要对物体进行全方位旋转,这对物体的尺寸有很大的限制。这些限制之前曾鼓励对替代采集轨迹的研究,包括仅具有线性运动的轨迹。在本文中,我们使用这种线轨迹(LT)X 射线层析成像技术从大型木质物体中提取树木年轮模式。我们证明,通过在采集过程中使木质文物在静态 X 射线源和探测器之间侧向移动,可以生成树木年轮的清晰重建图像。我们使用计算机模拟和两个木制测试板对该技术进行了验证,并在来自 Rijksmuseum 收藏(荷兰阿姆斯特丹)的大型标志性箱子上进行了演示。LT 扫描方法可以很容易地在博物馆研究设施中可用的标准 X 射线成像设备上实施。因此,这种扫描技术代表了在大型木质文化遗产物体上实现非侵入性树木年代学的标准实施的重要一步。