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      KCI등재

      Cone beam computed tomography로 합성된 두부규격 방사선사진에서의 각 계측점의 정확도와 재현성에 관한 연구 = Accuracy and reproducibility of landmark of cone beam computed tomography (CT) synthesized cephalograms

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      https://www.riss.kr/link?id=A105837379

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      다국어 초록 (Multilingual Abstract)

      Introduction: Cone beam computed tomography (CBCT) has various advantages and is used favorably in many fields in dentistry. Especially, CBCT is being used as basic diagnostic tool for 3-dimensional analysis in orthognathic patient. Two-dimensional ce...

      Introduction: Cone beam computed tomography (CBCT) has various advantages and is used favorably in many fields in dentistry. Especially, CBCT is being used as basic diagnostic tool for 3-dimensional analysis in orthognathic patient. Two-dimensional cephalograms can be synthesized from CBCT digital imaging and communications in medicine (DICOM) data. In this study, conventional cephalograms and CBCT were taken simultaneously,
      and representative landmarks were located and analyzed in its accuracy and reproducibility.
      Materials and Methods: Ten patients who had orthognathic surgery in Wonkwang University Daejeon Dental Hospital participated in this study.
      For each patient, CBCT and conventional cephalogram was taken. By using Ondemand (Cybermad, Korea), 2-dimensional cephalograms was established on CBCT. In addition, 19 landmarks were designated and measured by 3 orthodontists twice a week. After these landmarks were transferred to a coordinate, distance of landmark and axis, standard error, distribution degree were measured, compared and analyzed.
      Results: Comparing the CT ceph group and conventional cephalogram group, CT ceph group had shown shorter distance of landmark and axis in S, Hinge axis, Bpt, Ba, Or, Corpus left. Standard error of the mean shows that CT ceph group has better reproducibility in Or, Corpus left, Hinge axis at X axis and Na, U1R, U1T, Bpt, PNS, Ba Corpus left, Hinge axis at Y axis. In both groups, mean error was less than 1.00 mm, no significant difference
      were found between CT ceph group and conventional cephalogram group in all measurements. Furthermore, comparing two groups, each 17 landmarks out of 19 had its characteristic in distribution degree.
      Conclusion: No significant difference were found between CBCT composed cephalographic radiograph and conventional cephalograghic radiograph, clinical application may be possible if improved.

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      참고문헌 (Reference)

      1 Baumrind S, "Three-dimensional x-ray stereometry from paired coplanar images: a progress report" 84 : 292-312, 1983

      2 Huang J, "Three-dimensional radiographic analysis in orthodontics" 39 : 421-428, 2005

      3 Grayson B, "The three-dimensional cephalogram: theory, technique, and clinical application" 94 : 327-337, 1988

      4 Bae GS, "The comparative study of three-dimensional cephalograms in linear and angular measurements" 27 : 129-140, 1997

      5 Gravely JF, "The clinical significance of tracing error in cephalometry" 1 : 95-101, 1974

      6 Geelen W, "Reproducibility of cephalometric landmarks on conventional film, hardcopy, and monitor-displayed images obtained by the storage phosphor technique" 20 : 331-340, 1998

      7 McClure SR, "Reliability of digital versus conventional cephalometric radiology: a comparative evaluation of landmark identification error" 11 : 98-110, 2005

      8 Mah JK, "Radiation absorbed in maxillofacial imaging with a new dental computed tomography device" 96 : 508-513, 2003

      9 Halazonetis DJ, "From 2-dimensional cephalograms to 3-dimensional computed tomography scans" 127 : 627-637, 2005

      10 Tsiklakis K, "Dose reduction in maxillofacial imaging using low dose Cone Beam CT" 56 : 413-417, 2005

      1 Baumrind S, "Three-dimensional x-ray stereometry from paired coplanar images: a progress report" 84 : 292-312, 1983

      2 Huang J, "Three-dimensional radiographic analysis in orthodontics" 39 : 421-428, 2005

      3 Grayson B, "The three-dimensional cephalogram: theory, technique, and clinical application" 94 : 327-337, 1988

      4 Bae GS, "The comparative study of three-dimensional cephalograms in linear and angular measurements" 27 : 129-140, 1997

      5 Gravely JF, "The clinical significance of tracing error in cephalometry" 1 : 95-101, 1974

      6 Geelen W, "Reproducibility of cephalometric landmarks on conventional film, hardcopy, and monitor-displayed images obtained by the storage phosphor technique" 20 : 331-340, 1998

      7 McClure SR, "Reliability of digital versus conventional cephalometric radiology: a comparative evaluation of landmark identification error" 11 : 98-110, 2005

      8 Mah JK, "Radiation absorbed in maxillofacial imaging with a new dental computed tomography device" 96 : 508-513, 2003

      9 Halazonetis DJ, "From 2-dimensional cephalograms to 3-dimensional computed tomography scans" 127 : 627-637, 2005

      10 Tsiklakis K, "Dose reduction in maxillofacial imaging using low dose Cone Beam CT" 56 : 413-417, 2005

      11 Kamiishi H, "Development of the 3Dcephalogram: a technical note" 35 : 258-260, 2007

      12 Farman AG, "Development of imaging selection criteria and procedures should precede cephalometric assessment with cone-beam computed tomography" 130 : 257-265, 2006

      13 강지영, "Cone-beam CT로부터 제작된 측모 두부계측방사선사진의 정확도 평가" 대한치과교정학회 37 (37): 391-399, 2007

      14 Brown T, "Computer-assisted location of reference points in three dimensions for radiographic cephalometry" 95 : 490-498, 1989

      15 Adams GL, "Comparison between traditional 2-dimensional cephalometry and a 3-dimensional approach on human dry skulls" 126 : 397-409, 2004

      16 Trpkova B, "Cephalometric landmarks identification and reproducibility: a meta analysis" 112 : 165-170, 1997

      17 Mori Y, "An accurate threedimensional cephalometric system: a solution for the correction of cephalic malpositioning" 28 : 143-149, 2001

      18 Moshiri M, "Accuracy of linear measurements from imaging plate and lateral cephalometric images derived from cone-beam computed tomography" 132 : 550-560, 2007

      19 Liu JK, "Accuracy of computerized automatic identification of cephalometric landmarks" 118 : 535-540, 2000

      20 Broadbent BH, "A new x-ray technique and its application to orthodontia" 1 : 45-66, 1931

      21 Trocme′MC, "A biplanar cephalometric stereoradiography technique" 98 : 168-175, 1990

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
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      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
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      2013-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.15 0.15 0.17
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.15 0.14 0.597 0
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