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锥形束计算机断层扫描分辨率、3D打印分辨率及钻孔深度对引导式牙髓治疗中钻孔精度影响的评估:一项体外研究

Evaluation of Cone Beam Computed Tomography Resolution, 3D Printing Resolution and Drilling Depth on Drilling Accuracy in Guided Endodontics: An In-Vitro Study.

作者信息

Hénaut Marine, Meire Maarten, Vandomme Jérôme, Robberecht Lieven

机构信息

Department of Restorative Dentistry and Endodontics, University of Lille, Faculty of Odontology, Inserm, CHU Lille, Lille, France.

Department of Oral Health Sciences, Ghent University, Section of Endodontology, Ghent, Belgium.

出版信息

Eur Endod J. 2025 Mar;10(2):127-133. doi: 10.14744/eej.2024.57441.

Abstract

OBJECTIVE

The aim of this study was to evaluate the influence of cone-beam computed tomography (CBCT) resolution, 3D printing resolution, and drilling depth on drilling accuracy in guided endodontic access.

METHODS

Fifty-six printed canines were designed, fabricated, and mounted in maxillary arch models. Preoperative CBCT and 3D surface scan were matched and used to design a surgical guide with different planning parameters: 1) reference (high-resolution CBCT (80 µm) and 3D printing (50 µm), shallow drilling (14 mm)), 2) low-resolution CBCT (120 µm), 3) low-resolution 3D printing (100 µm) and 4) deep drilling (high-resolution CBCT (80 µm) and 3D printing (50 µm), deep drilling (21 mm)). Guided access into the printed canines was performed in a simulated clinical setting. A postoperative CBCT was matched with the planning data in order to determine the angular and linear (total, mesiodistal, buccolingual and depth) deviation between the planned and performed cavities. Mann-Whitney test was used to analyse differences between the reference group and each test group.

RESULTS

Angular, total linear and buccolingual deviations were significantly higher in the low-resolution CBCT group than in the reference group (median: 3.10° and 2.0° (p<0.01), 1.41 mm and 1.06 mm (p<0.05) and 0.77 mm and 0.41 mm (p<0.05), respectively). Depth deviation was significantly higher in the low-resolution 3D printing group than in the reference group (median: 0.90 mm and 0.45 mm (p<0.01), respectively). No other significant differences between the groups were noted (p>0.05).

CONCLUSION

Higher CBCT resolution resulted in lower angular and total linear deviation during guided endodontic access. Higher 3D printing resolution yielded lower vertical linear deviation. (EEJ-2024-05-086).

摘要

目的

本研究旨在评估锥形束计算机断层扫描(CBCT)分辨率、3D打印分辨率和钻孔深度对引导式牙髓治疗入路钻孔精度的影响。

方法

设计、制作并将56颗打印的犬牙安装在上颌牙弓模型中。术前CBCT和3D表面扫描进行匹配,并用于设计具有不同规划参数的手术导板:1)参照组(高分辨率CBCT(80µm)和3D打印(50µm),浅钻孔(14mm)),2)低分辨率CBCT(120µm),3)低分辨率3D打印(100µm),4)深钻孔(高分辨率CBCT(80µm)和3D打印(50µm),深钻孔(21mm))。在模拟临床环境中对打印的犬牙进行引导式入路操作。术后CBCT与规划数据进行匹配,以确定计划腔和实际操作腔之间的角度和线性(总、近远中、颊舌向和深度)偏差。采用曼-惠特尼检验分析参照组与各试验组之间的差异。

结果

低分辨率CBCT组的角度、总线性和颊舌向偏差显著高于参照组(中位数:分别为3.10°和2.0°(p<0.01),1.41mm和1.06mm(p<0.05),以及0.77mm和0.41mm(p<0.05))。低分辨率3D打印组的深度偏差显著高于参照组(中位数:分别为0.90mm和0.45mm(p<0.01))。未观察到组间其他显著差异(p>0.05)。

结论

更高的CBCT分辨率导致引导式牙髓治疗入路过程中的角度和总线性偏差更低。更高的3D打印分辨率产生更低的垂直线性偏差。(EEJ - 2024 - 05 - 086)

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