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不同数字化牙颌模型和锥形束计算机断层扫描创建数字孪生体的有效性。

Effectiveness of creating digital twins with different digital dentition models and cone-beam computed tomography.

机构信息

Division of Pediatric Dentistry, Hallym University Sacred Heart Hospital, Anyang, 14066, Korea.

Department of Artificial Intelligence and Robotics in Dentistry, Graduate School of Clinical Dentistry, Hallym University, Chuncheon, 24252, Korea.

出版信息

Sci Rep. 2023 Jun 30;13(1):10603. doi: 10.1038/s41598-023-37774-x.

Abstract

Distortion of dentition may occur in cone-beam computed tomography (CBCT) scans due to artifacts, and further imaging is frequently required to produce digital twins. The use of a plaster model is common; however, it has certain drawbacks. This study aimed to assess the feasibility of different digital dentition models over that of plaster casts. Plaster models, alginate impressions, intraoral scan (IOS) images, and CBCT images of 20 patients were obtained. The desktop model scanner was used to scan the alginate impression twice, five minutes and two hours after impression-making. Using an IOS, the full arch was scanned in segments using CS 3600 and simultaneously with i700 wireless. The digital twins obtained from the alginate impression and IOS were superimposed with those obtained from the plaster cast. The differences and distances at each reference point were measured. Scans of alginate impressions after two hours showed the greatest discrepancies, but these were all less than the CBCT voxel size of 0.39 mm. Alginate impression scans and IOS are suitable supplements to CBCT compared to the plaster model. Accuracy can be improved by scanning the alginate impression within five minutes or by intraoral scanning of the entire arch with segmentation.

摘要

牙列变形可能会在锥形束 CT(CBCT)扫描中由于伪影而发生,并且通常需要进一步成像以生成数字孪生体。使用石膏模型是常见的;然而,它有一定的缺点。本研究旨在评估不同数字牙列模型相对于石膏模型的可行性。获得了 20 名患者的石膏模型、藻酸盐印模、口内扫描(IOS)图像和 CBCT 图像。使用桌面模型扫描仪,在印模制作后五分钟和两小时分别对藻酸盐印模进行了两次扫描。使用 IOS,使用 CS 3600 和 i700 无线同时分段扫描全弓。将从藻酸盐印模和 IOS 获得的数字孪生体与从石膏模型获得的数字孪生体进行叠加,并测量每个参考点的差异和距离。两小时后的藻酸盐印模扫描显示出最大的差异,但所有差异均小于 0.39mm 的 CBCT 体素大小。与石膏模型相比,藻酸盐印模扫描和 IOS 是 CBCT 的合适补充。通过在五分钟内扫描藻酸盐印模或通过分段口内扫描整个弓,可以提高准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f46a/10313775/fc68dfefa344/41598_2023_37774_Fig1_HTML.jpg

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