DOI QR코드

DOI QR Code

Full mouth rehabilitation with dental implant utilizing 3D digital image and CAD/CAM system: case report

3차원 디지털 영상과 CAD/CAM 시스템을 활용한 전악 임플란트 수복 증례

  • Kang, Se-Ha (Department of Prosthodontics, Wonju College of Medicine, Yonsei University) ;
  • Jeong, Seung-Mi (Department of Prosthodontics, Wonju College of Medicine, Yonsei University) ;
  • Shin, Jae-Ok (Department of Prosthodontics, Wonju College of Medicine, Yonsei University) ;
  • Fang, Jeong-Whan (Department of Prosthodontics, Wonju College of Medicine, Yonsei University) ;
  • Kim, Dae-Hwan (Department of Prosthodontics, Wonju College of Medicine, Yonsei University) ;
  • Choi, Byung-Ho (Department of Oral and Maxillofacial Surgery, Wonju College of Medicine, Yonsei University)
  • 강세하 (연세대학교 원주의대 치과보철과) ;
  • 정승미 (연세대학교 원주의대 치과보철과) ;
  • 신재옥 (연세대학교 원주의대 치과보철과) ;
  • 방정환 (연세대학교 원주의대 치과보철과) ;
  • 김대환 (연세대학교 원주의대 치과보철과) ;
  • 최병호 (연세대학교 원주의대 구강악안면외과)
  • Received : 2015.05.22
  • Accepted : 2015.06.11
  • Published : 2015.06.30

Abstract

This article describes how to use digital system in a fully edentulous case that diagnosis to definitive prosthesis fabrication. While proceeding oral scan and CBCT taking, digital markers were attached on maxillary palate and lower existing denture. Using CBCT image and oral scan image, the bone contour and anatomical structures were analyzed and flapless surgical guide, customized abutment and prosthesis were made. After the osseointegration, the definitive prosthesis was fabricated using the oral scan image with scan body. It provides clinicians with a fast workflow and improves clinical efficiency.

본 증례는 상 하악 완전 무치악 환자에서 진단, 식립 그리고 보철물 제작에 디지털 방식을 활용하는 방법에 대해 제시하였다. 상악은 구개 부위, 하악은 기존 의치에 방사선 불투과성 마커를 부착한 후 구강스캔 및 CBCT 촬영을 시행하였다. 구강스캔 이미지와 CBCT 이미지를 중첩시켜 진단 및 수술가이드와 임시보철물을 제작하였다. 골유착 후에는 스캔바디를 이용한 구강스캔을 통해 최종보철물을 제작하였다. 임플란트를 이용한 전악수복에서 디지털 방식을 다양하게 활용하였으며 정확성과 환자의 불편감 최소화라는 목적에 만족할만한 결과를 얻었기에 이 증례를 보고하고자 한다.

Keywords

References

  1. Seitz H, Tille C, Irsen S, Bermes G, Sader R, Zeihofer HF. Rapid Prototyping models for surgical planning with hard and soft tissue representation. Int Congress Series 2004;1268:567-72.
  2. Ganz SD. Use of stereolithographic models as diagnostic and restorative aids for predictable immediate loading of implants. Pract Proced Aesthet Dent 2003;15:763-71.
  3. Hajeer MY, Millett DT, Ayoub AF, Siebert JP. Applications of 3D imaging in orthodontics: part II. J Orthod 2004;31:154-62. https://doi.org/10.1179/146531204225020472
  4. Di Giacomo GA, Cury PR, de Araujo NS, Sendyk WR, Sendyk CL. Clinical application of stereolithographic surgical guides for implant placement: preliminary results. J Periodontol 2005;76:503-7. https://doi.org/10.1902/jop.2005.76.4.503
  5. Ruppin J, Popovic A, Strauss M, Spuntrup E, Steiner A, Stoll C. Evaluation of the accuracy of three different computer-aided surgery systems in dental implantology: optical tracking vs. stereolithographic splint systems. Clin Oral Implants Res 2008;19:709-16.
  6. Van Assche N, van Steenberghe D, Guerrero ME, Hirsch E, Schutyser F, Quirynen M, Jacobs R. Accuracy of implant placement based on pre-surgical planning of three-dimensional cone beam images: a pilot study. J Clin Periodontol 2007;34:816-21. https://doi.org/10.1111/j.1600-051X.2007.01110.x
  7. van Steenberghe D, Naert I, Andersson M, Brajnovic I, Van Cleynenbreugel J, Suetens P. A custom template and definitive prosthesis allowing immediate implant loading in the maxilla: a clinical report. Int J Oral Maxillofac Implants 2002;17:663-70.
  8. Kim KS, Lim YJ, Kim MJ, Kwon HB, Yang JH, Lee JB, Yim SH. Variation in the total lengths of abutment/implant assemblies generated with a function of applied tightening torque in external and internal implant-abutment connection. Clin Oral Implants Res 2011;22:834-9. https://doi.org/10.1111/j.1600-0501.2010.02063.x

Cited by

  1. CAD/CAM 전문 인력 양성을 위한 교육 및 업무의 필요성 vol.38, pp.4, 2016, https://doi.org/10.14347/kadt.2016.38.4.365