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使用导板在具有钙化根管的3D打印牙齿中进行开髓预备和根管定位:一项体外CBCT研究

Access Cavity Preparation and Localization of Root Canals Using Guides in 3D-Printed Teeth with Calcified Root Canals: An In Vitro CBCT Study.

作者信息

Kamburoğlu Kıvanç, Sönmez Gül, Koç Cemre, Yılmaz Funda, Tunç Osman, Isayev Abulfaz

机构信息

Department of Dentomaxillofacial Radiology, Faculty of Dentistry, Ankara University, 06560 Ankara, Turkey.

Department of Dentomaxillofacial Radiology, Faculty of Dentistry, Ada Kent University, 33010 Mersin, Turkey.

出版信息

Diagnostics (Basel). 2023 Jun 29;13(13):2215. doi: 10.3390/diagnostics13132215.

Abstract

Pulp canal obliteration (PCO) is a significant complication in endodontics that can occur due to various factors. Cone beam computed tomography (CBCT) is a useful diagnostic tool for identifying root canal anatomy and variations, and guided endodontics is emerging as an alternative treatment solution for teeth with partially or entirely obliterated pulpal canals. However, the accuracy of CBCT-guided 3D-printed guides on different materials and layer thicknesses is not well understood. Therefore, this study aimed to evaluate the accuracy of guides prepared using CBCT images on 3D-printed teeth with stereolithography (SLA) using three different materials and two different layer thicknesses. This study found that 3D-printed guides were accurate and reliable for accessing 3D-manufactured obliterated teeth and reaching the apical area. No significant differences in distance or angle measurements were found when different guide materials were used, suggesting that materials can be selected based on availability and cost. These findings contribute to the knowledge base regarding the effectiveness of 3D printing technology in guided endodontics and can help to identify the most suitable materials and techniques for this application.

摘要

牙髓腔闭塞(PCO)是牙髓病学中的一种重要并发症,可由多种因素引起。锥形束计算机断层扫描(CBCT)是一种用于识别根管解剖结构和变异的有用诊断工具,而引导性牙髓治疗正成为治疗部分或完全闭塞牙髓腔牙齿的一种替代治疗方案。然而,CBCT引导的3D打印导板在不同材料和层厚上的准确性尚未得到充分了解。因此,本研究旨在评估使用CBCT图像在采用三种不同材料和两种不同层厚的立体光刻(SLA)3D打印牙齿上制备的导板的准确性。本研究发现,3D打印导板在进入3D制造的闭塞牙齿并到达根尖区域方面准确可靠。使用不同导板材料时,距离或角度测量未发现显著差异,这表明可根据可用性和成本选择材料。这些发现有助于丰富关于3D打印技术在引导性牙髓治疗中有效性的知识库,并有助于确定该应用中最合适的材料和技术。

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