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CAD/CAM 技术的进步:实际应用的选择。

Advancements in CAD/CAM technology: Options for practical implementation.

机构信息

Department of Prosthetic Dental Sciences, College of Dentistry, Taibah University, Medina, Kingdom of Saudi Arabia; Department of Materials Science and Engineering, School of Engineering, The University of Alabama at Birmingham, United States.

出版信息

J Prosthodont Res. 2016 Apr;60(2):72-84. doi: 10.1016/j.jpor.2016.01.003. Epub 2016 Feb 28.

Abstract

PURPOSE

The purpose of this review is to present a comprehensive review of the current published literature investigating the various methods and techniques for scanning, designing, and fabrication of CAD/CAM generated restorations along with detailing the new classifications of CAD/CAM technology.

STUDY SELECTION

I performed a review of a PubMed using the following search terms "CAD/CAM, 3D printing, scanner, digital impression, and zirconia". The articles were screened for further relevant investigations. The search was limited to articles written in English, published from 2001 to 2015. In addition, a manual search was also conducted through articles and reference lists retrieved from the electronic search and peer-reviewed journals.

RESULTS

CAD/CAM technology has advantages including digital impressions and models, and use of virtual articulators. However, the implementation of this technology is still considered expensive and requires highly trained personnel. Currently, the design software has more applications including complete dentures and removable partial denture frameworks. The accuracy of restoration fabrication can be best attained with 5 axes milling units. The 3D printing technology has been incorporated into dentistry, but does not include ceramics and is limited to polymers. In the future, optical impressions will be replaced with ultrasound impressions using ultrasonic waves, which have the capability to penetrate the gingiva non-invasively without retraction cords and not be affected by fluids.

CONCLUSION

The coming trend for most practitioners will be the use of an acquisition camera attached to a computer with the appropriate software and the capability of forwarding the image to the laboratory.

摘要

目的

本文旨在对当前已发表的关于 CAD/CAM 修复体扫描、设计和制作的各种方法和技术的文献进行综述,并详细介绍 CAD/CAM 技术的新分类。

研究选择

我使用以下搜索词在 PubMed 上进行了一次综述:“CAD/CAM、3D 打印、扫描仪、数字印模和氧化锆”。筛选这些文章以获取进一步的相关研究。搜索仅限于 2001 年至 2015 年期间以英文撰写的文章。此外,还通过从电子搜索和同行评议期刊中检索到的文章和参考文献进行了手动搜索。

结果

CAD/CAM 技术具有数字化印模和模型以及虚拟咬合架的优势。然而,该技术的实施仍然被认为是昂贵的,并且需要经过高度培训的人员。目前,设计软件具有更多的应用,包括全口义齿和可摘局部义齿框架。通过 5 轴铣削单元可以获得最佳的修复体制作精度。3D 打印技术已应用于牙科,但不包括陶瓷,并且仅限于聚合物。在未来,超声将取代光学印模,使用超声波进行非侵入性穿透牙龈,无需使用牵引线,也不受液体影响。

结论

对于大多数从业者来说,未来的趋势将是使用连接到计算机的获取摄像头,以及具有将图像转发到实验室的能力的适当软件。

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