A computational modeling method for root canal endoscopy using a specific CBCT filter: A new era in the metaverse of endodontics begins.

Q2 Medicine Brazilian dental journal Pub Date : 2022-07-01 DOI:10.1590/0103-6440202205078
Mike R Bueno, Carlos Estrela
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引用次数: 3

Abstract

A contemporary technological revolution has started a new era in the metaverse of Endodontics, a world of virtual operational possibilities that use an exact replica of the natural structures of the maxillofacial complex. This study describes a modeling method for root canal endoscopy using modern cone-beam CT (CBCT) software in a series of clinical cases. The method consists in acquiring thin CBCT slices (0.10mm) in the coronal, sagittal, and axial planes. A specific 3D volume filter, the pulp cavity filter of the e-Vol DX CBCT software, was used to navigate anatomical root canal microstructures, and to scan them using root canal endoscopy. The pulp cavity filter should be set to synchronize CBCT scans from 2D mode - multiplanar reformations (MPR) - to 3D mode - volumetric reconstruction. This filter, when adopting the option of volumetric reconstruction, the developed algorithm leaves the dentin density in transparent mode so that the pulp cavity may be visualized. The algorithm applied performs the suppression (visual) of areas with dentin density. This ensures 3D visualization of the slices and the microanatomy of the root canal, as well as a dynamic navigation throughout the pulp cavity. This computational modeling method adds new resources to Endodontics, which may impact the predictability of root canal treatments positively. The virtual visualization of the internal anatomy of an exact replica of the canal ensures better communications, reliability, and clinical operationalization. Root canal endoscopy using this novel CBCT filter may be used for clinical applications together with innovative digital and virtual-reality resources that will be naturally incorporated into the principles of Endodontics.

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一种使用特定CBCT过滤器的根管内窥镜计算建模方法:牙髓学的新时代开始了。
当代技术革命开启了牙髓学的新时代,这是一个虚拟操作可能性的世界,它使用了颌面复合体的自然结构的精确复制品。本研究通过一系列临床病例,描述了一种基于现代锥束CT (CBCT)软件的根管内窥镜建模方法。该方法包括在冠状面、矢状面和轴向面获取薄的CBCT切片(0.10mm)。使用特定的三维体积过滤器,即e-Vol DX CBCT软件的髓腔过滤器,导航解剖根管微观结构,并使用根管内窥镜扫描它们。髓腔过滤器应设置为同步CBCT扫描从二维模式-多平面重构(MPR)到三维模式-体积重建。该滤波器在采用体积重建选项时,所开发的算法使牙本质密度保持透明模式,从而使牙髓腔可视化。应用的算法对牙本质密度区域进行抑制(视觉)。这确保了切片的3D可视化和根管的微观解剖,以及整个牙髓腔的动态导航。这种计算建模方法为牙髓学增加了新的资源,可能对根管治疗的可预测性产生积极的影响。根管精确复制品的内部解剖的虚拟可视化确保了更好的通信、可靠性和临床操作。使用这种新型CBCT过滤器的根管内窥镜可以与创新的数字和虚拟现实资源一起用于临床应用,这些资源将自然地纳入牙髓学的原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Brazilian dental journal
Brazilian dental journal Dentistry-Dentistry (all)
CiteScore
2.20
自引率
0.00%
发文量
69
审稿时长
12 weeks
期刊介绍: Brazilian Dental Journal, publishes Full-Length Papers, Short Communications and Case Reports, dealing with dentistry or related disciplines and edited six times a year.
期刊最新文献
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