• Title/Summary/Keyword: Computer-aided design and computer-aided manufacturing (CAD-CAM) system

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Fabrication of computer-aided design/computer-aided manufacturing complete denture and conventional complete denture: case report (CAD/CAM system과 전통적인 방법을 이용한 총의치 동시 제작 증례)

  • Kim, Mi-Jin;Kim, Kang-Ho;Yeo, Dong-Heon
    • Journal of Dental Rehabilitation and Applied Science
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    • v.32 no.2
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    • pp.141-148
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    • 2016
  • Recently computer-aided technology has been widely used in dentistry. DENTCA$^{TM}$ CAD/CAM denture system (DENTCA Inc.), one of CAD/CAM systems for fabricating complete denture, tries to collect and store all of a patient's information at the first visit. This system aims to deliver denture at the second visit through utilizing the CAD/CAM software to access the stored data for designing the 3D denture model. The 3 dimensional (3D) denture will then be fabricated with 3D printer. Many case reports have evaluated clinical application of CAD/CAM system for fabricating complete dentures. This case report is about fabricating of complete dentures using DENTCA system and conventional method in same patient. With two cases, usefulness and limitation of DENTCA system could be evaluated.

CAD/CAM fabricated complete denture using 3D face scan: A case report (3D face scan을 이용한 CAD/CAM 제작 의치 증례)

  • Eom, Dae-Young;Leesungbok, Richard;Lee, Suk-Won;Park, Su-Jung;Ahn, Su-Jin
    • The Journal of Korean Academy of Prosthodontics
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    • v.55 no.4
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    • pp.436-443
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    • 2017
  • In the past, computer-aided design / computer-aided manufacturing (CAD/CAM) technology was the closed system that users had to use the components of only one manufacturer. At present, it has changed to the open system with the flexibility to select and use the components of various manufacturers' components according to their needs. Despite the development of dental materials and prostheses manufacturing methods, denture manufacturing has followed conventional manufacturing methods for nearly 100 years. However, studies on CAD/CAM fabricated denture have been recently carried out to overcome the disadvantages of conventional denture manufacturing. Some commercialized products using milling or 3D printing have already been applied clinically. This case report confirms the possibility of CAD/CAM dentures using 3D face scan and compared them to conventionally fabricated dentures.

The factors caused errors in the production process of CAD/CAM prosthesis based on experience (임상가를 위한 특집 1 - CAD/CAM 보철물의 제작 과정에서 오류가 발생할 수 있는 요소들에 대한 경험적 고찰)

  • Huh, Jung-Bo;Shim, June-Sung
    • The Journal of the Korean dental association
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    • v.52 no.6
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    • pp.332-345
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    • 2014
  • In recent years, precision machining of the dental prosthesis by computer assisted system is becoming pervasive in clinical dentistry. Prosthesis fabricating system that is designed by computer software and made by computer devices is called as a CAD/CAM (Computer-Aided Design/Computer-Aided Manufacturing) system. By the use of dental CAD/CAM system, the improvement of marginal compatibility and mechanical properties in prosthesis can be obtained more effectively, an aesthetic quality by using new materials such as zirconia can be increased. Also, the restoration process can be simple and efficient, the production time can be shortened, the process of manufacture can be standardized, and the mass production is possible. What is clear is that these benefits are theoretically possible, but the dentist or dental technician must understand the CAD/CAM basic principles and limitations for obtaining the maximum advantages of CAD/CAM system. For this reason, this article will be presented about the basic principles of CAD/CAM system and the factors of error that might occur in the CAD/CAM process based on my empirical study.

The treatment of an edentulous patient with conventional complete denture and CAD/CAM complete denture (Conventional한 방식과 CAD/CAM System을 이용한 완전 무치악 환자 동시 수복 증례)

  • Cho, Sungyoon;Lee, Joonseok
    • The Journal of Korean Academy of Prosthodontics
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    • v.58 no.1
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    • pp.42-49
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    • 2020
  • In patients with fully edentulous jaw, treatment of complete dentures should be carried out in many stages when following the conventional methods. Therefore there were disadvantages such as multiple visits to dental clinic is inevitable. In addition, errors caused by polymerization shrinkage, which happens during the fabrication of denture, and difficulties in reproduction of damaged or lost denture were considered as disadvantages. But nowadays, computer-aided design and computer-aided manufacturing (CAD/CAM) system is widely used in dentistry and it has begun to expand its spectrum in manufacturing complete dentures. Using CAD/CAM system to fabricate complete dentures can reduce the number of patient's visit and clinical chair time, since taking impression, recording jaw relation, and selection of artificial teeth are performed at the same time during the first visit, and delivering of dentures during the second visit is possible. In addition, because 3D-Printing technology is used, errors by polymerization shrinkage can be reduced. Among the companies that fabricate complete dentures using CAD/CAM system, DENTCA CAD/CAM denture (DENTCA Inc., Los Angeles, CA, USA) is the most commercialized company. In this case, we treated patients of complete dentures using conventional complete denture method and DENTCA CAD/CAM denture system in the same patient. We would like to report this case because we have achieved good results not only in functional aspects of pronunciation, chewing, and swallowing but also in aesthetic aspects.

CAE/CAD/CAM system for factory automation (공장 자동화를 위한 CAE/CAD/CAM 시스템)

  • Chae, Heon
    • 제어로봇시스템학회:학술대회논문집
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    • 1986.10a
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    • pp.443-447
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    • 1986
  • 오늘날 제조업에 있어서는 시장의 다양화, 원가절감 및 리드타임의 단축이라는 대내외적 요구에 부응할 수 있는 기술 생산체재의 확립이 요구되고 있다. 이에 따라 설계 및 기술변경(Engineering Change)에따른 원가상승을 막기 위해 CAE(Computer aided engineering), CAD(Computer aided design)의 도입을 서두르게 되었고 CAD데이타의 효율적 이용에 의한 가공 및 생산적 측면에서 CAM(Computer aided manufacturing)의 도입도 검토하게 되었다. 본 논문은 이러한 개념의 발상동기와 이를 뒷받침하기 위한 한국 아이 비 엠이서 제공하는 하드웨어 및 소프트웨어를 소개하고 공장자동화를 위한 기술 생산 통합시스템의 구축이라는 측면에서 아이 비 엠이 추구하는 방향을 검토하고 있다.

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Application of Virtual Surgical Planning with Computer Assisted Design and Manufacturing Technology to Cranio-Maxillofacial Surgery

  • Zhao, Linping;Patel, Pravin K.;Cohen, Mimis
    • Archives of Plastic Surgery
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    • v.39 no.4
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    • pp.309-316
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    • 2012
  • Computer aided design and manufacturing (CAD/CAM) technology today is the standard in manufacturing industry. The application of the CAD/CAM technology, together with the emerging 3D medical images based virtual surgical planning (VSP) technology, to craniomaxillofacial reconstruction has been gaining increasing attention to reconstructive surgeons. This article illustrates the components, system and clinical management of the VSP and CAD/CAM technology including: data acquisition, virtual surgical and treatment planning, individual implant design and fabrication, and outcome assessment. It focuses primarily on the technical aspects of the VSP and CAD/CAM system to improve the predictability of the planning and outcome.

Survey study on the Preference of Dental Medical Personnel for Dental CAD/CAM Milling Machines (치과용 CAD/CAM 밀링기에 대한 치과의료종사자들의 선호도 조사)

  • Song, Eun Sung;Kim, Bongju;Lim, Young-Joon;Lee, Jun Jae
    • The Journal of Korean Academy of Prosthodontics
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    • v.56 no.3
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    • pp.188-198
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    • 2018
  • Purpose: Recently, according to the development of digital technology, computer aided design/computer aided manufacture (CAD/CAM) system is widely used for fabrication of various dental prostheses in the field of dentistry. This study aims to survey the present state and awareness of CAD/CAM system on domestic dental field, and to supply the advice for the application of the new system. Materials and methods: In this questionnaire survey was conducted for a total of 298 dentists, dental hygienist and dental technicians of the whole country including the dental hospital of Seoul National University for two months from November to December, 2016 through mail. Results: The most important purpose to consider when purchasing a dental CAD/CAM milling machine were the performance of the milling machine (64.43%) and the use of milling machine was the highest with 49.33% of manufacturing for dental prosthesis and customized implant abutment. In addition, more than 60% of respondents answered positively about the purchase of new milling machine if the CAD/CAM milling machine was improved to satisfactory performance. Conclusion: This survey results show that the improved CAD/CAM milling machine would be play an important role in the dental industry in preparation for digitization and the 4th industrial revolution.

Fabrication of custom abutment using dental CAD/CAM system (임상가를 위한 특집 2 - CAD/CAM 시스템을 이용한 Custom abutment의 제작)

  • Kim, Hyeong-Seob
    • The Journal of the Korean dental association
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    • v.50 no.3
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    • pp.118-125
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    • 2012
  • CAD/CAM systems (computer-aided design / computer-aided manufacturing) used for decades in restorative dentistry have its application to implant dentistry. This study aimed to overview CAD/CAM systems used implant dentistry, especially emphasizing custom implant abutments manufacturing. CAD/CAM custom abutments present the advantages of being specific to each patient and providing a better fit than the stock and cast custom abutments. This cutting edge technology of virtual-designed and computer-milled implant abutments will likely replace traditional implant restorative protocols and become the standard for implant dentistry in the foreseeable future.

Restoration using dental CAD/CAM system in severe tooth wear patient: A case report

  • Kee, Wonjin;Kim, Hyeran;Lim, Hyun-Pil;Yun, Kwi-Dug;Park, Chan
    • Oral Biology Research
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    • v.42 no.4
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    • pp.262-268
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    • 2018
  • In a situation where a vertical dimension has to be increased, the normal occlusion, function and aesthetics should be restored after taking into consideration the neuromuscular system and temporomandibular join. In order to do this, the provisional prosthesis should be made according to the patient's information. Moreover, the period of adjustment should be made through the provisional prosthesis modification, if necessary. The patient is then transferred to the final prosthesis to obtain results that are satisfactory. In the modern-day world, provisional prosthesis are replicated using three dimensional scanning and computer aided design/computer aided manufacturing (CAD/CAM) then made into final prosthesis. The adaptability of stomatognathic system can be judged by the PMMA provisional restoration. Functional and aesthetical aspect can be obtained. The adjustment period can be shortened by an intraoral correction and proper wear between provisional restorations. By using the CAD/CAM technology that transfers the information right into the final prosthesis.

Accuracy evaluation of dental models manufactured by CAD/CAM milling method and 3D printing method

  • Jeong, Yoo-Geum;Lee, Wan-Sun;Lee, Kyu-Bok
    • The Journal of Advanced Prosthodontics
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    • v.10 no.3
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    • pp.245-251
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    • 2018
  • PURPOSE. To evaluate the accuracy of a model made using the computer-aided design/computer-aided manufacture (CAD/CAM) milling method and 3D printing method and to confirm its applicability as a work model for dental prosthesis production. MATERIALS AND METHODS. First, a natural tooth model (ANA-4, Frasaco, Germany) was scanned using an oral scanner. The obtained scan data were then used as a CAD reference model (CRM), to produce a total of 10 models each, either using the milling method or the 3D printing method. The 20 models were then scanned using a desktop scanner and the CAD test model was formed. The accuracy of the two groups was compared using dedicated software to calculate the root mean square (RMS) value after superimposing CRM and CAD test model (CTM). RESULTS. The RMS value ($152{\pm}52{\mu}m$) of the model manufactured by the milling method was significantly higher than the RMS value ($52{\pm}9{\mu}m$) of the model produced by the 3D printing method. CONCLUSION. The accuracy of the 3D printing method is superior to that of the milling method, but at present, both methods are limited in their application as a work model for prosthesis manufacture.