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基于体素和表面的下颌骨重叠精度研究。

A study on the precision of voxel- and surface-based mandibular superimposition.

作者信息

Lin Gengbing, Chen Xue-Ting, Shi Xie

机构信息

Gengbing Lin, Department of Stomatology, Fujian Provincial People's Hospital, Affiliated People's Hospital of Fujian University of Traditional Chinese Medicine, Fuzhou 350004, Fujian, China.

Xue-ting Chen, Department of Orthodontics, Fujian Key Laboratory of Oral Diseases & Fujian Provincial Engineering Research Center of Oral Biomaterial & Stomatological Key lab of Fujian College and University, School and Hospital of Stomatology, Fujian Medical University & Institute of Stomatology, Fujian Medical University, Fuzhou 350004, Fujian, China.

出版信息

Pak J Med Sci. 2024 Sep;40(8):1802-1807. doi: 10.12669/pjms.40.8.8441.

Abstract

OBJECTIVE

To apply the more accurate technique for mandibular superimposition and provide a valuable reference for the assessment of mandibular tooth movement and condylar remodeling before and after orthodontic treatment.

METHODS

This retrospective study involved 38 adult patients who underwent two cone beam computer tomography (CBCT) scans at different stages of treatment at Fujian Provincial People's Hospital between September, 2020 and December, 2022. The software Dolphin was used for mandible segmentation, enabling voxel-based mandibular superimposition with the mandibular ramus as the reference region. The Geomagic Wrap software was employed to process surface-based mandibular superimposition with the mandibular ramus as a reference. Additionally, the voxel and surface-based methods were compared for precision, with the mandibular ramus being the reference.

RESULTS

After voxel-based mandibular superimposition using the mandibular ramus as a reference, with all measurement errors (< 0.20 mm). In contrast, the results of surface-based mandibular superimposition with the same reference, and the measurement errors were all less than 0.10 mm. The Wilcoxon signed-rank test revealed statistically significant differences between AS1 and BS1, AS2 and BS2, AS3 and BS3, and AS4 and BS4 (all r< 0.05). Moreover, the absolute mean distances of AS1-AS4 were all greater than those of BS1-BS4.

CONCLUSION

All mandibular superimposition procedures, including the voxel- and surface-based ones using the mandibular ramus as a reference, have acceptable surface errors (< 0.20 mm), indicating the good reliability of these techniques. Under the specified conditions, surface-based mandibular superimposition appears to yield a higher degree of precision compared with the voxel-based technique.

摘要

目的

应用更精确的下颌骨叠加技术,为正畸治疗前后下颌牙齿移动和髁突重塑的评估提供有价值的参考。

方法

这项回顾性研究纳入了38例成年患者,他们于2020年9月至2022年12月期间在福建省立医院接受了两个不同治疗阶段的锥形束计算机断层扫描(CBCT)。使用Dolphin软件进行下颌骨分割,以下颌升支为参考区域进行基于体素的下颌骨叠加。采用Geomagic Wrap软件以下颌升支为参考进行基于表面的下颌骨叠加。此外,以下颌升支为参考,比较了基于体素和基于表面的方法的精度。

结果

以下颌升支为参考进行基于体素的下颌骨叠加后,所有测量误差均<0.20 mm。相比之下,以相同参考进行基于表面的下颌骨叠加的结果,测量误差均小于0.10 mm。Wilcoxon符号秩检验显示,AS1与BS1、AS2与BS2、AS3与BS3以及AS4与BS4之间存在统计学显著差异(所有r<0.05)。此外,AS1 - AS4的绝对平均距离均大于BS1 - BS4的绝对平均距离。

结论

所有下颌骨叠加程序,包括以下颌升支为参考的基于体素和基于表面的程序,都具有可接受的表面误差(<0.20 mm),表明这些技术具有良好的可靠性。在特定条件下,与基于体素的技术相比,基于表面的下颌骨叠加似乎具有更高的精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fb3/11395366/c73fcc530c72/PJMS-40-1802-g001.jpg

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