Department of Orthodontics and Dentofacial Orthopedics, School of Dental Medicine, University of Bern, 3010, Bern, Switzerland.
Jeddah Second Health Cluster, Ministry of Health, Riyadh, Saudi Arabia.
Sci Rep. 2023 Nov 28;13(1):21002. doi: 10.1038/s41598-023-48320-0.
The accuracy of three-dimensional (3D) facial skeletal surface models derived from radiographic volumes has not been extensively investigated yet. For this, ten human dry skulls were scanned with two Cone Beam Computed Tomography (CBCT) units, a CT unit, and a highly accurate optical surface scanner that provided the true reference models. Water-filled head shells were used for soft tissue simulation during radiographic imaging. The 3D surface models that were repeatedly segmented from the radiographic volumes through a single-threshold approach were used for reproducibility testing. Additionally, they were compared to the true reference model for trueness measurement. Comparisons were performed through 3D surface approximation techniques, using an iterative closest point algorithm. Differences between surface models were assessed through the calculation of mean absolute distances (MAD) between corresponding surfaces and through visual inspection of facial surface colour-coded distance maps. There was very high reproducibility (approximately 0.07 mm) and trueness (0.12 mm on average, with deviations extending locally to 0.5 mm), and no difference between radiographic scanners or settings. The present findings establish the validity of lower radiation CBCT imaging protocols at a similar level to the conventional CT images, when 3D surface models are required for the assessment of facial morphology.
目前尚未广泛研究从放射容积中得出的三维(3D)面部骨骼表面模型的准确性。为此,使用两台锥形束计算机断层扫描(CBCT)设备、一台 CT 设备和一台高精度光学表面扫描仪对十个人类干颅骨进行了扫描,后者提供了真实的参考模型。在放射成像过程中,用水填充头壳以模拟软组织。通过单一阈值方法从放射容积中反复分割的 3D 表面模型用于可重复性测试。此外,还将其与真实参考模型进行了准确性测量。通过使用迭代最近点算法的 3D 表面逼近技术进行了比较。通过计算对应表面之间的平均绝对距离(MAD)和对面部表面彩色编码距离图的目视检查来评估表面模型之间的差异。具有非常高的可重复性(约为 0.07 毫米)和准确性(平均为 0.12 毫米,局部偏差扩展至 0.5 毫米),并且放射扫描仪或设置之间没有差异。当需要评估面部形态时,本研究结果确立了低辐射 CBCT 成像方案在与传统 CT 图像相似的水平上的有效性,可用于 3D 表面模型。