• Title/Summary/Keyword: 디지털 덴티스트리

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Transformation of digital dentistry and the need of introducing education in dental hygiene (디지털 덴티스트리의 전환과 치위생교육 도입의 필요성)

  • Hye-Bin Go;Young-Joo Seo;Bok-Yeon Won;Sang-Hwan Oh
    • Journal of Korean society of Dental Hygiene
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    • v.22 no.6
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    • pp.467-475
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    • 2022
  • Objectives: This study aimed to understand the definitions, types, and principles of computer-aided design/computer-aided manufacturing (CAD/CAM) and scanners due to the introduction of digital workflows. Methods: This study was based on information from the government's law and articles published in academic journals. Results: CAD/CAM is a technology that measures the shape three-dimensionally, saves it as data, designs it into the desired shape, and processes the product. Scanners, which are classified as intraoral and extraoral scanners, measure teeth and the intraoral environment three-dimensionally and convert them into three-dimensional (3D). A 3D printer is a machine that creates a 3D object by layering materials based on a 3D drawing. It can be classified into four types according to the method: extrusion, powder bonding, lamination, and photopolymerization methods. The most used 3D printer methods in dentistry are stereolithograhpy and digital light processing, and they are widely used in prosthetic, surgical, and orthodontic fields. Conclusions: As the dental system is digitized, it is expected that the government will classify the dental hygienist scope of work and the universities will reflect the curriculum; it is necessary to develop excellent dental hygienists, diversify the educational pathways, and establish policies to meet the needs of the increasing number of patients.

Combined use of direct and indirect digital impression in temporary denture fabrication (직접 및 간접 디지털 인상을 병용한 임시 의치 제작 증례)

  • Ji-Su Park;Cheong-Hee Lee;Kyu-Bok Lee;Du-Hyeong Lee;Hyun-Ji Yu;So-Yeun Kim
    • Journal of Dental Rehabilitation and Applied Science
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    • v.40 no.3
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    • pp.159-168
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    • 2024
  • Through the use of intraoral scanners, it is possible to obtain intraoral scan impressions and produce prostheses. This approach is also being attempted not only in dentate patients but also in edentulous patients. However, obtaining scans of edentulous areas can be more challenging than scanning dental areas, and there may be limitations, especially in capturing the details of the mucosal tissues. On the other hand, when obtaining impressions with intraoral scanners, simultaneous recording of the occlusal relationship of the maxilla and mandible can reduce the number of patient visits and expedite the restoration process. In this case, we aimed to combine the advantages of direct intraoral scanning and indirect digital impressions obtained after traditional impression-taking by merging two types of scan files. Consequently, in patients with partially edentulous arches, we sought to provide effective interim prostheses through direct and indirect digital model impressions and report our findings accordingly.