Probst Jannis, Dritsas Konstantinos, Halazonetis Demetrios, Ren Yijin, Katsaros Christos, Gkantidis Nikolaos
Department of Orthodontics and Dentofacial Orthopedics, School of Dental Medicine, University of Bern, CH-3010 Bern, Switzerland.
Department of Orthodontics, School of Dentistry, National and Kapodistrian University of Athens, GR-11527 Athens, Greece.
Diagnostics (Basel). 2022 Sep 18;12(9):2251. doi: 10.3390/diagnostics12092251.
Three-dimensional surface scans of skeletal structures have various clinical and research applications in medicine, anthropology, and other relevant fields. The aim of this study was to test the precision of a widely used hand-held surface scanner and the associated software's 3D model generation-error in both dry and wet skeletal surfaces. Ten human dry skulls and ten mandibles (dry and wet conditions) were scanned twice with an industrial scanner (Artec Space Spider) by one operator. Following a best-fit superimposition of corresponding surface model pairs, the mean absolute distance (MAD) between them was calculated on ten anatomical regions on the skulls and six on the mandibles. The software's 3D model generation process was repeated for the same scan of four dry skulls and four mandibles (wet and dry conditions), and the results were compared in a similar manner. The median scanner precision was 31 μm for the skulls and 25 μm for the mandibles in dry conditions, whereas in wet conditions it was slightly lower at 40 μm for the mandibles. The 3D model generation-error was negligible (range: 5-10 μm). The Artec Space Spider scanner exhibits very high precision in the scanning of dry and wet skeletal surfaces.
骨骼结构的三维表面扫描在医学、人类学及其他相关领域有着多种临床和研究应用。本研究的目的是测试一种广泛使用的手持式表面扫描仪及其相关软件在干燥和湿润骨骼表面生成三维模型时的精度误差。由一名操作人员使用工业扫描仪(Artec Space Spider)对十个干燥的人类头骨和十个下颌骨(干燥和湿润状态)各扫描两次。在对相应表面模型对进行最佳拟合叠加后,计算它们在头骨的十个解剖区域和下颌骨的六个解剖区域上的平均绝对距离(MAD)。对四个干燥头骨和四个下颌骨(湿润和干燥状态)进行相同扫描时,重复软件的三维模型生成过程,并以类似方式比较结果。干燥条件下,头骨的扫描仪精度中位数为31μm,下颌骨为25μm;而在湿润条件下,下颌骨的精度略低,为40μm。三维模型生成误差可忽略不计(范围:5 - 10μm)。Artec Space Spider扫描仪在干燥和湿润骨骼表面扫描中表现出非常高的精度。