Accuracy of Microimplant Placement Using a 3D Guide Plate for Orthodontic Anchorage.

IF 1.8 4区 计算机科学 Q3 ENGINEERING, BIOMEDICAL Applied Bionics and Biomechanics Pub Date : 2023-01-01 DOI:10.1155/2023/9060046
Fangyong Zhu, Lian Ji, Chen Zhou, Yannan Cao, Zhifei Chen, Xiangbing Wu, Jianming Zou, Yufeng Gao
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Abstract

This study aimed to design a three-dimensional (3D) guide plate using computer-aided design and a 3D printing system for precise implantation of microimplants for orthodontic treatment and investigate the accuracy and feasibility of a 3D guide plate in clinical practice. A total of 30 microimplants were placed in 15 patients in the Department of Stomatology, Affiliated Hospital of Jiangnan University. Before surgery, DICOM data from cone-beam computed tomography (CBCT) scans and STereoLithography data from the 3D model scan were imported to 3Shape Dental System. Data fitting and matching were performed, and 3D guide plates were designed primarily focusing on the thickness of guide plates, amount of concave compensation, and dimensions of the ring. Assist implantation method was used to place the microimplants, and postoperative CBCT images were used to evaluate the position and implantation angle. The feasibility of placing microimplants and precise implantation guided by the 3D guide plate. CBCT data before and after the placement of microimplants were compared. Regarding the secure positioning of microimplants based on CBCT data, 26 implants were categorized as Grade i, four as Grade ii, and none as Grade iii. No loosening of microimplants 1 and 3 months after surgery was reported. The implantation of microimplants is more accurate under the guidance of a 3D guide plate. This technology can achieve accurate implant positioning, thus ensuring safety, stability, and improved success rates after implantation.

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三维导向板用于正畸支抗的微种植体植入精度研究。
本研究旨在利用计算机辅助设计和3D打印系统设计三维(3D)导板,用于正畸治疗微种植体的精确植入,并探讨三维导板在临床实践中的准确性和可行性。江南大学附属医院口腔科15例患者共植入30颗微种植体。术前,将锥形束计算机断层扫描(CBCT)的DICOM数据和3D模型扫描的STereoLithography数据导入3Shape Dental System。进行数据拟合和匹配,主要针对导板厚度、凹补偿量和环的尺寸进行三维导板设计。采用辅助种植法放置微种植体,术后CBCT图像评估植入位置和种植角度。三维导向板引导下植入微种植体及精确植入的可行性。比较植入微种植体前后的CBCT数据。基于CBCT数据的微种植体安全定位,i级26颗,ii级4颗,iii级0颗。术后1、3个月无微植入物松动。在三维导向板的引导下,微植入体的植入更加精确。该技术可以实现种植体的准确定位,从而保证种植后的安全性、稳定性和提高成功率。
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来源期刊
Applied Bionics and Biomechanics
Applied Bionics and Biomechanics ENGINEERING, BIOMEDICAL-ROBOTICS
自引率
4.50%
发文量
338
审稿时长
>12 weeks
期刊介绍: Applied Bionics and Biomechanics publishes papers that seek to understand the mechanics of biological systems, or that use the functions of living organisms as inspiration for the design new devices. Such systems may be used as artificial replacements, or aids, for their original biological purpose, or be used in a different setting altogether.
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