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使用扫描体记录数字化流程中种植体完整弓位的位置的范式转变。

A Paradigm Shift Using Scan Bodies to Record the Position of a Complete Arch of Implants in a Digital Workflow.

出版信息

Int J Periodontics Restorative Dent. 2024;44(1):115-126. doi: 10.11607/prd.6733.

Abstract

The use of conventional scan bodies (SBs) with an intraoral scanner (IOS) to capture the position of a complete arch of dental implants has proven to be challenging. The literature is unclear about the accuracy of intraoral scanning techniques using SBs that are connected vertically to multiunit abutments (MUAs) for numerous adjacent implants in the same arch. Recently, there has been a paradigm shift from vertical SBs to horizontal SBs, which are positioned perpendicular to the long axis of the MUAs. Most IOSs available today can capture these horizontal SBs, called scan gauges (SGs), with better accuracy and consequently acquire the position of multiple adjacent implants using an effective scan path, thus reducing stitching and the number of images. The key to implementing this novel technology is to strategically arrange the SGs to optimize horizontal overlap of multiple adjacent SGs without touching each other. By superimposing two high-resolution intraoral scans of the SGs, an artificial intelligence (AI) algorithm is employed to produce a calibrated digital best-fit model on which a passive complete-arch prosthesis can be designed and fabricated. The advantages and disadvantages of SBs and SGs are discussed, and a case report using a digital workflow is presented.

摘要

使用传统扫描体(SB)与口内扫描仪(IOS)来获取全口种植体弓位置的方法已被证明具有挑战性。关于使用 SB 连接到多单位基台(MUA)以获取同一弓上多个相邻种植体的 IOS 技术的准确性,文献尚不清楚。最近,已经从垂直 SB 向水平 SB 转变,后者垂直于 MUA 的长轴定位。当今大多数 IOS 都可以更准确地获取这些称为扫描规(SG)的水平 SB,从而使用有效的扫描路径获取多个相邻种植体的位置,从而减少拼接和图像数量。实施这项新技术的关键是战略性地布置 SG,以优化多个相邻 SG 的水平重叠,而不会相互接触。通过对两个 SG 的高分辨率口内扫描进行叠加,使用人工智能(AI)算法生成校准的数字最佳拟合模型,在此模型上可以设计和制作被动全弓修复体。讨论了 SB 和 SG 的优缺点,并展示了一个使用数字化工作流程的病例报告。

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