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      Three-dimensional cone-beam computed tomography based comparison of condylar position and morphology according to the vertical skeletal pattern

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      https://www.riss.kr/link?id=A100462101

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      Objective: To compare condylar position and morphology among different vertical skeletal patterns. Methods: Diagnostic cone-beam computed tomography images of 60 adult patients (120 temporomandibular joints) who visited the orthodontic clinic of Hallym University Sacred Heart Hospital were reviewed. The subjects were divided into three equal groups according to the mandibular plane angle: hypodivergent, normodivergent, and hyperdivergent groups. Morphology of the condyle and mandibular fossa and condylar position were compared among the groups. Results: The hypodivergent and hyperdivergent groups showed significant differences in superior joint spaces, antero-posterior condyle width, medio-lateral condyle width, condyle head angle, and condylar shapes. Conclusions: Condylar position and morphology vary according to vertical facial morphology. This relationship should be considered for predicting and establishing a proper treatment plan for temporomandibular diseases during orthodontic treatment.
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      Objective: To compare condylar position and morphology among different vertical skeletal patterns. Methods: Diagnostic cone-beam computed tomography images of 60 adult patients (120 temporomandibular joints) who visited the orthodontic clinic of Hally...

      Objective: To compare condylar position and morphology among different vertical skeletal patterns. Methods: Diagnostic cone-beam computed tomography images of 60 adult patients (120 temporomandibular joints) who visited the orthodontic clinic of Hallym University Sacred Heart Hospital were reviewed. The subjects were divided into three equal groups according to the mandibular plane angle: hypodivergent, normodivergent, and hyperdivergent groups. Morphology of the condyle and mandibular fossa and condylar position were compared among the groups. Results: The hypodivergent and hyperdivergent groups showed significant differences in superior joint spaces, antero-posterior condyle width, medio-lateral condyle width, condyle head angle, and condylar shapes. Conclusions: Condylar position and morphology vary according to vertical facial morphology. This relationship should be considered for predicting and establishing a proper treatment plan for temporomandibular diseases during orthodontic treatment.

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      목차 (Table of Contents)

      • INTRODUCTION
      • MATERIALS AND METHODS
      • RESULTS
      • DISCUSSION
      • CONCLUSION
      • INTRODUCTION
      • MATERIALS AND METHODS
      • RESULTS
      • DISCUSSION
      • CONCLUSION
      • REFERENCES
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      참고문헌 (Reference)

      1 Stringert HG, "Variations in skeletal and dental patterns in patients with structural and functional alterations of the temporomandibular joint: a preliminary report" 89 : 285-297, 1986

      2 Schudy FF, "Treatment of adult midline deviation by condylar repositioning" 30 : 343-347, 1996

      3 Cohlmia JT, "Tomographic assessment of temporomandibular joints in patients with malocclusion" 66 : 27-35, 1996

      4 Yang IH, "Skeletal differences in patients with temporomandibular joint disc displacement according to sagittal jaw relationship" 70 : e349-360, 2012

      5 Ahmad M, "Research diagnostic criteria for temporomandibular disorders (RDC/TMD):development of image analysis criteria and examiner reliability for image analysis" 107 : 844-860, 2009

      6 Matsumoto MA, "Radiographic morphology of the temporomandibular joint related to occlusal characteristics" 5 : 115-120, 1994

      7 Tsiklakis K, "Radiographic examination of the temporomandibular joint using cone beam computed tomography" 33 : 196-201, 2004

      8 Custodio W, "Occlusal force, electromyographic activity of masticatory muscles and mandibular flexure of subjects with different facial types" 19 : 343-349, 2011

      9 Katsavrias EG, "Morphology of the temporomandibular joint in subjects with Class II Division 2malocclusions" 129 : 470-478, 2006

      10 Zhang ZL, "Measurement accuracy of temporomandibular joint space in Promax 3-dimensional cone-beam computerized tomography images" 114 : 112-117, 2012

      1 Stringert HG, "Variations in skeletal and dental patterns in patients with structural and functional alterations of the temporomandibular joint: a preliminary report" 89 : 285-297, 1986

      2 Schudy FF, "Treatment of adult midline deviation by condylar repositioning" 30 : 343-347, 1996

      3 Cohlmia JT, "Tomographic assessment of temporomandibular joints in patients with malocclusion" 66 : 27-35, 1996

      4 Yang IH, "Skeletal differences in patients with temporomandibular joint disc displacement according to sagittal jaw relationship" 70 : e349-360, 2012

      5 Ahmad M, "Research diagnostic criteria for temporomandibular disorders (RDC/TMD):development of image analysis criteria and examiner reliability for image analysis" 107 : 844-860, 2009

      6 Matsumoto MA, "Radiographic morphology of the temporomandibular joint related to occlusal characteristics" 5 : 115-120, 1994

      7 Tsiklakis K, "Radiographic examination of the temporomandibular joint using cone beam computed tomography" 33 : 196-201, 2004

      8 Custodio W, "Occlusal force, electromyographic activity of masticatory muscles and mandibular flexure of subjects with different facial types" 19 : 343-349, 2011

      9 Katsavrias EG, "Morphology of the temporomandibular joint in subjects with Class II Division 2malocclusions" 129 : 470-478, 2006

      10 Zhang ZL, "Measurement accuracy of temporomandibular joint space in Promax 3-dimensional cone-beam computerized tomography images" 114 : 112-117, 2012

      11 Ahn SJ, "Evaluation of internal derangement of the temporomandibular joint by panoramic radiographs compared with magnetic resonance imaging." 129 : 479-485, 2006

      12 Saccucci M, "Do skeletal cephalometric characteristics correlate with condylar volume, surface and shape? A 3D analysis" 8 : 15-, 2012

      13 Ahn SJ, "Discrimination of internal derangement of temporomandibular joint by lateral cephalometric analysis" 130 : 331-339, 2006

      14 Naeije M, "Disc displacement within the human temporomandibular joint: a systematic review of a ‘noisy annoyance'" 40 : 139-158, 2013

      15 Hayashi T, "Detectability of anterior displacement of the articular disk in the temporomandibular joint on helical computed tomography: the value of open mouth position" 88 : 106-111, 1999

      16 Burke G, "Correlations between condylar characteristics and facial morphology in Class II preadolescent patients" 114 : 328-336, 1998

      17 Shahidi S, "Correlation between articular eminence steepness measured with cone-beam computed tomography and clinical dysfunction index in patients with temporomandibular joint dysfunction" 116 : 91-97, 2013

      18 Katsavrias EG, "Condyle and fossa shape in Class II and Class III skeletal patterns: a morphometric tomographic study" 128 : 337-346, 2005

      19 Gianelly AA, "Condylar position and Class II deep-bite, no-overjet malocclusions" 96 : 428-432, 1989

      20 나경수, "Condylar bony changes in patients with temporomandibular disorders: a CBCT study" 대한구강악안면방사선학회 42 (42): 249-253, 2012

      21 Rodrigues AF, "Computed tomography evaluation of the temporomandibular joint in Class II Division 1 and Class III malocclusion patients: condylar symmetry and condyle-fossa relationship" 136 : 199-206, 2009

      22 Rodrigues AF, "Computed tomography evaluation of the temporomandibular joint in Class I malocclusion patients: condylar symmetry and condyle-fossa relationship" 136 : 192-198, 2009

      23 Vitral RW, "Computed tomography evaluation of temporomandibular joint alterations in patients with class II division 1 subdivision malocclusions: condyle-fossa relationship" 126 : 48-52, 2004

      24 Vitral RW, "Computed tomography evaluation of temporomandibular joint alterations in class II Division 1 subdivision patients: condylar symmetry" 121 : 369-375, 2002

      25 Girardot RA Jr, "Comparison of condylar position in hyperdivergent and hypodivergent facial skeletal types" 71 : 240-246, 2001

      26 Maria João Ponces, "Comparison of condylar displacement between three biotypological facial groups by using mounted models and a mandibular position indicator" 대한치과교정학회 44 (44): 312-319, 2014

      27 Ikeda K, "Assessment of optimal condylar position with limited cone-beam computed tomography" 135 : 495-501, 2009

      28 Dalili Z, "Assessing joint space and condylar position in the people with normal function of temporomandibular joint with cone-beam computed tomography" 9 : 607-612, 2012

      29 Burley M, "An examination of the relation between the radiographic appearance of the temporomandibular joint and some features of the occlusion" 110 : 195-200, 1961

      30 Seren E, "An evaluation of the condylar position of the temporomandibular joint by computerized tomography in Class III malocclusions:a preliminary study" 105 : 483-488, 1994

      31 Hilgers ML, "Accuracy of linear temporomandibular joint measurements with cone beam computed tomography and digital cephalometric radiography" 128 : 803-811, 2005

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2004-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2003-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2002-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2000-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.13 0.47 0.83
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.67 0.55 0.311 0.24
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