Scientific Service of Heritage, Royal Belgian Institute of Natural Sciences, Brussels, Belgium.
Collections Management, Royal Museum for Central Africa, Tervuren, Belgium.
PLoS One. 2024 Oct 23;19(10):e0311887. doi: 10.1371/journal.pone.0311887. eCollection 2024.
Natural history collections are invaluable reference collections. Digitizing these collections is a transformative process that improves the accessibility, preservation, and exploitation of specimens and associated data in the long term. Arthropods make up the majority of zoological collections. However, arthropods are small, have detailed color textures and share small, complex and shiny structures, which poses a challenge to conventional digitization methods. Sphaeroptica is a multi-images viewer that uses a sphere of oriented images. It allows the visualization of insects including their tiniest features, the positioning of landmarks, and the extraction of 3D coordinates for measuring linear distances or for use in geometric morphometrics analysis. The quantitative comparisons show that the measures obtained with Sphaeroptica are similar to the measurements derived from 3D μCT models with an average difference inferior to 1%, while featuring the high resolution of color stacked pictures with all details like setae, chaetae, scales, and other small and/or complex structures. Shaeroptica was developed for the digitization of small arthropods but it can be used with any sphere of aligned images resulting from the digitization of objects or specimens with complex surface and shining, black, or translucent texture which cannot easily be digitized using structured light scanner or Structure-from-Motion (SfM) photogrammetry.
自然历史藏品是极具价值的参考资料。对这些藏品进行数字化是一个具有变革意义的过程,从长远来看,可以提高标本和相关数据的可及性、保存性和利用性。节肢动物构成了动物收藏的大部分。然而,节肢动物体积小,具有详细的彩色纹理,并且共享小而复杂且有光泽的结构,这给传统的数字化方法带来了挑战。Sphaeroptica 是一种使用定向图像球体的多图像查看器。它允许可视化昆虫,包括它们最小的特征、地标定位,以及提取 3D 坐标,用于测量线性距离或用于几何形态测量分析。定量比较表明,Sphaeroptica 获得的测量值与来自 3D μCT 模型的测量值相似,平均差异小于 1%,同时具有彩色堆叠图片的高分辨率,所有细节如刚毛、纤毛、鳞片和其他小而复杂的结构都清晰可见。Sphaeroptica 是为小型节肢动物的数字化而开发的,但它可以与任何由对齐图像的球体一起使用,这些图像是通过对具有复杂表面和有光泽、黑色或半透明纹理的物体或标本进行数字化而得到的,这些物体或标本使用结构光扫描仪或基于运动的(SfM)摄影测量法很难进行数字化。