Feasibility of augmented reality using dental arch-based registration applied to navigation in mandibular distraction osteogenesis: a phantom experiment.

IF 2.6 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE BMC Oral Health Pub Date : 2024-10-30 DOI:10.1186/s12903-024-05105-9
Shi-Xi He, Cheng Ma, Zong-Yi Yuan, Tian-Feng Xu, Qing-Tiao Xie, Ya-Xi Wang, Xuan-Ping Huang
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Abstract

Objective: Distraction osteogenesis is a primary treatment for severe mandibular hypoplasia. Achieving the ideal mandible movement direction through precise distraction vector control is still a challenge in this surgery. Therefore, the aim of this study was to apply Optical See-Through (OST) Augmented Reality (AR) technology for intraoperative navigation during mandibular distractor installation and analyze the feasibility to evaluate the effectiveness of AR in a phantom experiment.

Methods: Phantom was made of 3D-printed mandibular models based on preoperative CT scans and dental arch scans of real patients. Ten sets of 3D-printed mandible models were included in this study, with each set consisting of two identical mandible models assigned to the AR group and free-hand group. 10 sets of mandibular distraction osteogenesis surgical plans were designed using software, and the same set of plans was shared between the AR and free-hand groups. Surgeons performed bilateral mandibular distraction osteogenesis tasks under the guidance of AR navigation, or the reference of the preoperative surgical plan displayed on the computer screen. The differences in angular errors of distraction vectors and the distance errors of distractor positions under the guidance of the two methods were analyzed and compared.

Results: 40 distractors were implanted in both groups, with 20 cases in each. In intra-group comparisons between the left and right sides, the AR group exhibited a three-dimensional spatial angle error of 1.88 (0.59, 2.48) on the left and 2.71 (1.33, 3.55) on the right, with P = 0.085, indicating no significant bias in guiding surgery on both sides of the mandible. In comparisons between the AR group and the traditional free-hand (FH) group, the average angle error was 1.94 (1.30, 2.93) in the AR group and 5.06 (3.61, 9.22) in the free-hand group, with P < 0.0001, resulting in a 61.6% improvement in accuracy. The average displacement error was 1.53 ± 0.54 mm in the AR group and 3.56 ± 1.89 mm in the free-hand group, with P < 0.0001, indicating a 57% improvement in accuracy.

Conclusion: Augmented Reality technology for intraoperative navigation in mandibular distraction osteogenesis is accurate and feasible. A large randomized controlled trial with long-term follow-up is needed to confirm these findings.

Trial registration: The project has been registered with the Chinese Clinical Trial Registry, with registration number ChiCTR2300068417. Date of Registration: 17 February 2023.

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将基于牙弓注册的增强现实技术应用于下颌牵引成骨术导航的可行性:一个模型实验。
目的:牵引成骨术是治疗严重下颌骨发育不良的主要方法。通过精确的牵引矢量控制实现理想的下颌骨运动方向仍是该手术的一大挑战。因此,本研究旨在将光学透视(OST)增强现实(AR)技术应用于下颌骨牵引器安装过程中的术中导航,并在模型实验中分析评估增强现实技术的可行性:方法:根据真实患者的术前CT扫描和牙弓扫描结果,用3D打印下颌骨模型制作模型。本研究包括 10 套 3D 打印的下颌骨模型,每套由两个相同的下颌骨模型组成,分别分配给 AR 组和徒手组。使用软件设计了 10 套下颌骨牵引成骨手术计划,AR 组和徒手组共享同一套计划。外科医生在AR导航的指导下,或参照电脑屏幕上显示的术前手术计划,进行双侧下颌骨牵引成骨手术。分析并比较了两种方法引导下牵引矢量的角度误差和牵引器位置的距离误差:结果:两组均植入了 40 个牵引器,每组各 20 例。在左右两侧的组内比较中,AR 组的三维空间角度误差左侧为 1.88(0.59,2.48),右侧为 2.71(1.33,3.55),P=0.085,表明在引导下颌骨两侧手术时没有明显偏差。在增强现实组和传统徒手组(FH)之间的比较中,增强现实组的平均角度误差为 1.94(1.30,2.93),徒手组为 5.06(3.61,9.22),P 结论:增强现实技术在下颌骨两侧手术中没有明显偏差:增强现实技术在下颌骨牵引成骨术中的术中导航准确可行。需要进行长期随访的大型随机对照试验来证实这些发现:该项目已在中国临床试验注册中心注册,注册号为ChiCTR2300068417。注册日期:2023 年 2 月 17 日:2023年2月17日。
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来源期刊
BMC Oral Health
BMC Oral Health DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
3.90
自引率
6.90%
发文量
481
审稿时长
6-12 weeks
期刊介绍: BMC Oral Health is an open access, peer-reviewed journal that considers articles on all aspects of the prevention, diagnosis and management of disorders of the mouth, teeth and gums, as well as related molecular genetics, pathophysiology, and epidemiology.
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