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      2종류의 버와 3종류의 버를 이용해 제작된 크라운 보철물의 정밀도 평가

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      https://www.riss.kr/link?id=A102040978

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      다국어 초록 (Multilingual Abstract)

      Purpose: The purpose of this study was to assess precision of crown prostheses that were fabricated by using 2 kinds of bur or 3 kinds of bur. Methods: The crowns were fabricated by using the first molar of the right maxillary in this study. The abutments that were prepared were scanned by using a scanner and designed by using CAD software. Based on the crown design, NC data were created with CAM software. The created NC data were used while fabricating the crown prostheses by using 5-axis milling machine. Scanning was done for the internal and external surface of the completed crown prostheses and 3-dimensional measurement was conducted for precision assessment. Results: The RMS±SD value for the external surface of the crown prostheses that was fabricated by using two burs and three burs were 28.5±4.1㎛ and 19.1±2.8㎛, respectively; and the value for two burs were bigger than that for three burs with statistical significance (p<0.001). The RMS±SD value for the internal surface of the crown prostheses that was fabricated by using two burs and three burs were 14.9±1.9㎛ and 13.3±2.5㎛, respectively;and the value for two burs were bigger than that for three burs but with no statistical significance. Conclusion: Based on this study, the prostheses that were fabricated by using 3 bur presented better stability compared to those that were fabricated by using 2 bur and statistically significant difference was found only in the external surface.
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      Purpose: The purpose of this study was to assess precision of crown prostheses that were fabricated by using 2 kinds of bur or 3 kinds of bur. Methods: The crowns were fabricated by using the first molar of the right maxillary in this study. The abutm...

      Purpose: The purpose of this study was to assess precision of crown prostheses that were fabricated by using 2 kinds of bur or 3 kinds of bur. Methods: The crowns were fabricated by using the first molar of the right maxillary in this study. The abutments that were prepared were scanned by using a scanner and designed by using CAD software. Based on the crown design, NC data were created with CAM software. The created NC data were used while fabricating the crown prostheses by using 5-axis milling machine. Scanning was done for the internal and external surface of the completed crown prostheses and 3-dimensional measurement was conducted for precision assessment. Results: The RMS±SD value for the external surface of the crown prostheses that was fabricated by using two burs and three burs were 28.5±4.1㎛ and 19.1±2.8㎛, respectively; and the value for two burs were bigger than that for three burs with statistical significance (p<0.001). The RMS±SD value for the internal surface of the crown prostheses that was fabricated by using two burs and three burs were 14.9±1.9㎛ and 13.3±2.5㎛, respectively;and the value for two burs were bigger than that for three burs but with no statistical significance. Conclusion: Based on this study, the prostheses that were fabricated by using 3 bur presented better stability compared to those that were fabricated by using 2 bur and statistically significant difference was found only in the external surface.

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      목차 (Table of Contents)

      • [Abstract]
      • Ⅰ. 서론
      • Ⅱ. 연구 방법
      • 1. 시편 제작 및 스캔 데이터 획득
      • 2. 크라운 디자인 및 밀링
      • [Abstract]
      • Ⅰ. 서론
      • Ⅱ. 연구 방법
      • 1. 시편 제작 및 스캔 데이터 획득
      • 2. 크라운 디자인 및 밀링
      • 3. 3차원 측정
      • 4. 통계분석
      • Ⅲ. 결과
      • Ⅳ. 고찰
      • Ⅴ. 결론
      • REFERENCES
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      참고문헌 (Reference)

      1 Kim KB, "Threedimensional evaluation of gaps associated with fixed dental prostheses fabricated with new technologies" 112 (112): 1432-1436, 2014

      2 Moldovan O, "Three-dimensional fit of CAD/CAM-made zirconia copings" 27 (27): 1273-1278, 2011

      3 Kim DH, "Structured modeling of sculptured surface machining process" 3 (3): 192-200, 1998

      4 Tinschert J, "Status of current CAD/CAM technology in dental medicine" 7 (7): 25-45, 2004

      5 Schaefer O, "Marginal and internal fit of pressed lithium disilicate partial crowns in vitro: a three-dimensional analysis of accuracy and reproducibility" 28 (28): 320-326, 2012

      6 Al Wazzan, KA, "Marginal and internal adaptation of commercially pure titanium and titanium-aluminum-vanadium alloy cast restorations" 8 (8): 19-26, 2007

      7 International Organization for Standardization, "ISO-12836:2015: Dentistry -- Digitizing devices for CAD/CAM systems for indirect dental restorations -- Test methods for assessing accuracy"

      8 Luthardt RG, "Huls A. An innovative method for evaluation of the 3-D internal fit of CAD/CAM crowns fabricated after direct opical versus indirect laser scan digitizing" 17 (17): 680-685, 2004

      9 김기백, "Evaluation of the marginal and internal gap of metal-ceramic crown fabricated with a selective laser sintering technology: two- and threedimensional replica techniques" 대한치과보철학회 5 (5): 179-186, 2013

      10 Quaas S, "Direct mechanical data acquisition of dental impressions for the manufacturing of CAD/restorations" 35 (35): 903-908, 2007

      1 Kim KB, "Threedimensional evaluation of gaps associated with fixed dental prostheses fabricated with new technologies" 112 (112): 1432-1436, 2014

      2 Moldovan O, "Three-dimensional fit of CAD/CAM-made zirconia copings" 27 (27): 1273-1278, 2011

      3 Kim DH, "Structured modeling of sculptured surface machining process" 3 (3): 192-200, 1998

      4 Tinschert J, "Status of current CAD/CAM technology in dental medicine" 7 (7): 25-45, 2004

      5 Schaefer O, "Marginal and internal fit of pressed lithium disilicate partial crowns in vitro: a three-dimensional analysis of accuracy and reproducibility" 28 (28): 320-326, 2012

      6 Al Wazzan, KA, "Marginal and internal adaptation of commercially pure titanium and titanium-aluminum-vanadium alloy cast restorations" 8 (8): 19-26, 2007

      7 International Organization for Standardization, "ISO-12836:2015: Dentistry -- Digitizing devices for CAD/CAM systems for indirect dental restorations -- Test methods for assessing accuracy"

      8 Luthardt RG, "Huls A. An innovative method for evaluation of the 3-D internal fit of CAD/CAM crowns fabricated after direct opical versus indirect laser scan digitizing" 17 (17): 680-685, 2004

      9 김기백, "Evaluation of the marginal and internal gap of metal-ceramic crown fabricated with a selective laser sintering technology: two- and threedimensional replica techniques" 대한치과보철학회 5 (5): 179-186, 2013

      10 Quaas S, "Direct mechanical data acquisition of dental impressions for the manufacturing of CAD/restorations" 35 (35): 903-908, 2007

      11 Beuer F, "Digital dentistry:an overview of recent developments for CAD/CAM generated restorations" 204 (204): 505-511, 2008

      12 XB Lei, "Design of a 5-Axis CNC Machine Tool Applied to Dental Restoration" 568 : 75-80, 2013

      13 Fasbinder DJ, "Computerized technology for restorative dentistry" 26 (26): 115-120, 2013

      14 Bidra AS, "Computer-aided technology for fabricating complete dentures:systematic review of historical background, current status, and future perspectives" 109 (109): 361-366, 2013

      15 Persson A, "Computer aided analysis of digitized dental stone replicas by dental CAD/CAM technology" 24 (24): 1123-1130, 2008

      16 Penate L, "Comparative study of interim materials for direct fixed dental prostheses and their fabrication with CAD/CAM technique" 114 (114): 248-253, 2015

      17 Persson A, "A three-dimensional evaluation of a laser scanner and a touch-probe scanner" 95 (95): 194-200, 2006

      18 Miyazaki T, "A review of dental CAD/CAM: current status and future perspectives from 20 years of experience" 28 (28): 44-56, 2009

      19 Ng J, "A comparison of the marginal fit of crowns fabricated with digital and conventional methods" 112 (112): 555-560, 2014

      20 Bosch G, "A 3-dimensional accuracy analysis of chairside CAD/CAMmilling processes" 112 (112): 1425-1431, 2014

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2020-07-01 학술지명변경 외국어명 : THE JOURNAL OF KOREAN ACADEMY OF DENTAL TECHNOLOGY -> Journal of Technologic Dentistry KCI등재
      2018-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2017-01-01 평가 등재후보학술지 유지 (계속평가) KCI등재후보
      2015-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
      2013-12-01 평가 등재후보 탈락 (등재후보2차)
      2012-01-01 평가 등재후보 1차 FAIL (기타) KCI등재후보
      2010-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.13 0.13 0.14
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.19 0.23 0.285 0.03
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