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口腔正畸数字化工作流程:设备与临床应用。

Orthodontic digital workflow: devices and clinical applications.

机构信息

Instituto Prime de Ensino, Curso de Especialização em Ortodontia (Salvador/BA, Brazil).

出版信息

Dental Press J Orthod. 2021 Dec 15;26(6):e21spe6. doi: 10.1590/2177-6709.26.6.e21spe6. eCollection 2021.

Abstract

INTRODUCTION

The digital technology has contributed to improve and simplify diagnosis, treatment planning and execution in Orthodontics. Among CAD/CAM system (Computer-Aided Design / Computer-Aided Manufacturing) applications in Orthodontics, we highlight the installation and removal of fixed appliance, clear aligners, customized appliances, and retainers fabricated in digital environment. This approach has several advantages for practitioner and patient, as it enhances appliances precision, directly interferes in treatment time and predictability. Even with all the benefits arising from the digital workflow, few orthodontists have adopted this technique in their clinical practice, most due to high cost and lack of technical preparation for proper execution.

OBJECTIVES

Thus, given the importance of digital technology to improve specialty performance and the still incipient incorporation of digital flow in Orthodontics, the purpose of this article is to describe the available resources and clinical applications of the CAD/CAM technology in Orthodontics.

摘要

简介

数字技术有助于改善和简化正畸学中的诊断、治疗计划和执行。在正畸学中的 CAD/CAM 系统(计算机辅助设计/计算机辅助制造)应用中,我们重点介绍了固定矫治器、透明矫治器、定制矫治器和数字环境中制造的保持器的安装和拆除。这种方法对医生和患者都有很多好处,因为它提高了矫治器的精度,直接影响治疗时间和可预测性。尽管数字工作流程带来了所有这些好处,但很少有正畸医生将这种技术应用于临床实践中,主要是因为成本高,而且缺乏适当执行的技术准备。

目的

因此,鉴于数字技术对于提高专业性能的重要性,以及数字流程在正畸学中的应用仍处于起步阶段,本文的目的是描述 CAD/CAM 技术在正畸学中的可用资源和临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0752/8690351/26226fc7f6f8/2177-6709-dpjo-26-06-e21spe6-gf1.jpg

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