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      CBCT 및 3D CT를 활용한 상악 유구치 치근과 근관 형태 = Root and Canal Morphology of Maxillary Primary Molar using CBCT and 3D CT

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      https://www.riss.kr/link?id=A108017004

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      다국어 초록 (Multilingual Abstract)

      The purpose of this study is to analyze morphological characteristics of maxillary primary molar's root and root canal. 268 children aged 3 - 7 years (175 boys, 93 girls) who had CBCT (152 children) and 3D CT (116 children) taken in Seoul National University Dental Hospital from January 2006 to April 2020 were included. The number of roots and root canals were analyzed in 1002 teeth without any root resorption or periapical pathologies. Curvature, angulation, length of root and root canal, as well as cross-sectional shapes of the root canal were analyzed in 218 teeth. By using Mimics and 3-Matics software, volume, surface area, and volume ratio of root canal was analyzed in 48 teeth. More than half of maxillary primary molars have 3 roots and 3 root canals. The degree of symmetry of root canal type was about 0.63 (Cohen's kappa coefficient). The most frequent shape of roots and canals was linear in 1<sup>st</sup> primary molars and curved in 2<sup>nd</sup> primary molars. Angulation, length of root and root canals was the largest on palatal roots. Most teeth showed ovoid or round shapes at apex. The largest root canal volume, surface area, volume ratio was found in the palatal roots.
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      The purpose of this study is to analyze morphological characteristics of maxillary primary molar's root and root canal. 268 children aged 3 - 7 years (175 boys, 93 girls) who had CBCT (152 children) and 3D CT (116 children) taken in Seoul National Uni...

      The purpose of this study is to analyze morphological characteristics of maxillary primary molar's root and root canal. 268 children aged 3 - 7 years (175 boys, 93 girls) who had CBCT (152 children) and 3D CT (116 children) taken in Seoul National University Dental Hospital from January 2006 to April 2020 were included. The number of roots and root canals were analyzed in 1002 teeth without any root resorption or periapical pathologies. Curvature, angulation, length of root and root canal, as well as cross-sectional shapes of the root canal were analyzed in 218 teeth. By using Mimics and 3-Matics software, volume, surface area, and volume ratio of root canal was analyzed in 48 teeth. More than half of maxillary primary molars have 3 roots and 3 root canals. The degree of symmetry of root canal type was about 0.63 (Cohen's kappa coefficient). The most frequent shape of roots and canals was linear in 1<sup>st</sup> primary molars and curved in 2<sup>nd</sup> primary molars. Angulation, length of root and root canals was the largest on palatal roots. Most teeth showed ovoid or round shapes at apex. The largest root canal volume, surface area, volume ratio was found in the palatal roots.

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      참고문헌 (Reference)

      1 김영종, "하악 제 2 유구치 근관 만곡의 방사선학적 계측" 대한소아치과학회 30 (30): 2-, 2003

      2 김창기, "제 2근심협측근관이 존재하는 상악유구치의 치험례" 대한소아치과학회 29 (29): 5-, 2002

      3 Barbizam JVB, "Unusual anatomy of permanent maxillary molars" 30 : 668-671, 2004

      4 Peters OA, "Threedimensional analysis of root canal geometry by high-resolution computed tomography" 79 : 1405-1409, 2000

      5 Plotino G, "Three-dimensional imaging using microcomputed tomography for studying tooth macromorphology" 137 : 1555-1561, 2006

      6 Asif MK, "Three-dimensional image analysis of developing mandibular third molars apices for age estimation : a study using CBCT data enhanced with Mimics & 3-Matics software" 39 : 9-14, 2019

      7 Reddy NV, "Three-dimensional assessment of root canal morphology of human deciduous molars using cone beam computed tomography : An In vitro Study" 3 : 36-41, 2018

      8 Leonardi R, "Three-dimensional analysis of mandibular functional units in adult patients with unilateral posterior crossbite : A cone beam study with the use of mirroring and surface-to-surface matching techniques" 89 : 590-596, 2019

      9 Cleghorn BM, "The root and root canal morphology of the human mandibular first premolar : a literature review" 33 : 509-516, 2007

      10 Aminabadi NA, "Study of root canal accessibility in human primary molars" 50 : 69-74, 2008

      1 김영종, "하악 제 2 유구치 근관 만곡의 방사선학적 계측" 대한소아치과학회 30 (30): 2-, 2003

      2 김창기, "제 2근심협측근관이 존재하는 상악유구치의 치험례" 대한소아치과학회 29 (29): 5-, 2002

      3 Barbizam JVB, "Unusual anatomy of permanent maxillary molars" 30 : 668-671, 2004

      4 Peters OA, "Threedimensional analysis of root canal geometry by high-resolution computed tomography" 79 : 1405-1409, 2000

      5 Plotino G, "Three-dimensional imaging using microcomputed tomography for studying tooth macromorphology" 137 : 1555-1561, 2006

      6 Asif MK, "Three-dimensional image analysis of developing mandibular third molars apices for age estimation : a study using CBCT data enhanced with Mimics & 3-Matics software" 39 : 9-14, 2019

      7 Reddy NV, "Three-dimensional assessment of root canal morphology of human deciduous molars using cone beam computed tomography : An In vitro Study" 3 : 36-41, 2018

      8 Leonardi R, "Three-dimensional analysis of mandibular functional units in adult patients with unilateral posterior crossbite : A cone beam study with the use of mirroring and surface-to-surface matching techniques" 89 : 590-596, 2019

      9 Cleghorn BM, "The root and root canal morphology of the human mandibular first premolar : a literature review" 33 : 509-516, 2007

      10 Aminabadi NA, "Study of root canal accessibility in human primary molars" 50 : 69-74, 2008

      11 Fumes A, "Root canal morphology of primary molars : a micro-computed tomography study" 15 : 317-326, 2014

      12 Vertucci FJ, "Root canal morphology and its relationship to endodontic procedures" 10 : 3-29, 2005

      13 Cleghorn BM, "Primary human teeth and their root canal systems" 23 : 6-33, 2010

      14 Tu MG, "Prevalence of three-rooted primary mandibular first molars in Taiwan" 109 : 69-74, 2010

      15 Versiani MA, "Microcomputed tomography study of oval-shaped canals prepared with the Self-adjusting File, Reciproc, WaveOne, and Protaper Universal systems" 39 : 1060-1066, 2013

      16 Versiani MA, "Flat-oval root canal preparation with self-adjusting file instrument : a micro-computed tomography study" 37 : 1002-1007, 2011

      17 Ozcan G, "Evaluation of root canal morphology of human primary molars by using CBCT and comprehensive review of the literature" 74 : 250-258, 2016

      18 Carrotte P, "Endodontics : Part 4 Morphology of the root canal system" 197 : 379-383, 2004

      19 Chugal NM, "Endodontic infection : some biologic and treatment factors associated with outcome" 96 : 81-90, 2003

      20 Asif MK, "Dental age estimation employing CBCT scans enhanced with Mimics software : Comparison of two different approaches using pulp/tooth volumetric analysis" 54 : 53-61, 2018

      21 Bawazir OA, "Clinical evaluation of root canal obturation methods in primary teeth" 28 : 39-47, 2006

      22 Peters OA, "Changes in root canal geometry after preparation assessed by highresolution computed tomography" 27 : 1-6, 2001

      23 최유민, "CBCT를 이용한 유구치의 치근 및 근관의 형태학적 평가" 대한소아치과학회 47 (47): 25-35, 2020

      24 Bagherian A, "An in vitro study of root and canal morphology of human deciduous molars in an Iranian population" 52 : 397-403, 2010

      25 Wang Y, "Accuracy of volumetric measurement of teeth in vivo based on cone beam computer tomography" 14 : 206-212, 2011

      26 Robiony M, "Accuracy of virtual reality and stereolithographic models in maxillo-facial surgical planning" 19 : 482-489, 2018

      27 Liu H, "Accuracy of surgical positioning of orthodontic miniscrews with a computer-aided design and manufacturing template" 137 : 728-, 2010

      28 Maret D, "Accuracy of 3D reconstructions based on cone beam computed tomography" 89 : 1465-1469, 2010

      29 Siqueira Jr JF, "Ability of chemomechanical preparation with either rotary instruments or self-adjusting file to disinfect oval-shaped root canals" 36 : 1860-1865, 2010

      30 Wang YL, "A study on the root canal morphology of primary molars by high-resolution computed tomography" 8 : 321-327, 2013

      31 Zoremchhingi, "A study of root canal morphology of human primary molars using computerised tomography : an in vitro study" 23 : 7-12, 2005

      32 Gaurav V, "A study of root canal morphology of human primary incisors and molars using cone beam computerized tomography : An in vitro study" 31 : 254-259, 2013

      33 Omer O, "A comparison between clearing and radiographic techniques in the study of the root-canal anatomy of maxillary first and second molars" 37 : 291-296, 2004

      34 Günday M, "A comparative study of three different root canal curvature measurement techniques and measuring the canal access angle in curved canals" 31 : 796-798, 2005

      35 Balani P, "A brief review of the methods used to determine the curvature of root canals" 3 : 57-, 2015

      36 심도희, "A Study of Root Canals Morphology in Primary Molars using Computerized Tomography" 대한소아치과학회 46 (46): 400-408, 2019

      37 Reynolds M, "3-d volumetric evaluation of human mandibular growth" 5 : 83-89, 2011

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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
      2018-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2017-12-01 평가 등재후보로 하락 (계속평가) KCI등재후보
      2013-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.39 0.39 0.37
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.36 0.35 0.399 0.05
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