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虚拟研究模型:模块化应用系统的比较。

Virtual study models: a comparison of modular application systems.

机构信息

Department of Orthodontics and Clinical Gnatology, University of Padua, Italy.

出版信息

Prog Orthod. 2009;10(2):16-25.

Abstract

INTRODUCTION

Virtual study models made their first appearance on the orthodontic market in 1999. The early systems offered two-dimensional images; reliable 3D images of study models were obtained only with the introduction of laser technology. Virtual study models have reduced the number of limitations and obstacles associated with the use of conventional plaster models and resulted in the creation of the "paperless orthodontic office". To understand their drawbacks, advantages and affordability, the different systems available for virtual dental casts were compared.

DISCUSSION

The systems envisaging the use of 3D virtual study models are: Orthocad, e-models, Orthoproof, SureSmile, Invisalign and Libra. All of these systems offer model "manipulation" options, whereas only Orthocad, e-models and SureSmile offer advanced levels of software complexity, so as to ensure: virtual set-up, computer-aided bracket placement, planning and construction of orthodontic appliances. The use of hand-held scanners calls for highly specific skills. Basic requirements to use digital models include: a personal computer, internet access, management software.

CONCLUSION

The digital elaboration of orthodontic study models is developing beyond the collection of morphologic and diagnostic data, towards the planning and production of orthodontic devices, through the use of morphing simulating the several phases of the treatment. Digital 3D models can be used at a basic and at a more advanced level, depending on the clinician's level of experience.

摘要

简介

虚拟研究模型于 1999 年首次出现在正畸市场上。早期的系统提供二维图像;只有引入激光技术,才能获得可靠的研究模型三维图像。虚拟研究模型减少了与使用传统石膏模型相关的许多限制和障碍,并导致了“无纸正畸办公室”的创建。为了了解它们的缺点、优点和可负担性,对可用于虚拟牙模的不同系统进行了比较。

讨论

使用 3D 虚拟研究模型的系统有:Orthocad、e-models、Orthoproof、SureSmile、Invisalign 和 Libra。所有这些系统都提供了模型“操作”选项,而只有 Orthocad、e-models 和 SureSmile 提供了高级别的软件复杂性,以确保:虚拟设置、计算机辅助托槽放置、正畸器械的规划和构建。使用手持式扫描仪需要非常专业的技能。使用数字模型的基本要求包括:个人计算机、互联网接入、管理软件。

结论

正畸研究模型的数字化处理不仅仅是收集形态和诊断数据,而是通过使用模拟治疗几个阶段的变形来规划和制作正畸设备。数字 3D 模型可以在基本和更高级的水平上使用,具体取决于临床医生的经验水平。

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