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      KCI등재

      3차원 영상에 의한 안면 비대칭의 분석

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      https://www.riss.kr/link?id=A75199252

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      다국어 초록 (Multilingual Abstract)

      This study is to show the qualitative analytic methods of facial asymmetry with threedimensional morphometry and find out asymmetry change resulted from enlarging three local regions. Steel balls (1.2 in diameter) were attached in twenty seven landm...

      This study is to show the qualitative analytic methods of facial asymmetry with threedimensional
      morphometry and find out asymmetry change resulted from enlarging three local regions.
      Steel balls (1.2 in diameter) were attached in twenty seven landmarks of a symmetrical
      artificial human skull. This artificial human skull was used as experimental materials. Twelve
      different asymmetrical artificial human skulls were formed by gradually enlarging the mandibular
      body length, gonial angle, and ramus height of the left hemiface.
      From the three-dimensional morphometry of each skull type, nine local area measurements and
      three total sum area measurements(representing the mandibular area, maxillary area, and lower
      facial area) were acquired and made into the surface area asymmetry degree. Menton deviation
      itself was used as the surface area asymmetry degree while right-left percentages were used in the other measurements. These surface area asymmetry degrees were compared with each other to find out asymmetry change according to the degree of actual facial asymmetry. Through the statistical analysis, following results were obtained.
      The results were as follows:
      1. Left maxillary area of artificial human skull was 7.13 0.26% larger while mandibular area
      was 4.14 0.12% smaller than each those of right hemiface. After all, left lower facial area
      was 1.44 0.07% larger than those of right hemiface.(n=7)
      2. Among the reduce rates of surface area asymmetry degree resulted from enlarging three local
      regions, ramus height was similar to mandibular body length while it was bigger than those of
      gonial angle.
      3. Among the increase rates of menton deviation resulted from enlarging the local regions, ramus
      height was the biggest, mandibular body length was the second and gonial angle was the
      smallest.
      These results suggest that three-dimensional morphometry can be used to qualitatively analyse
      facial asymmetry and the asymmetry degree is more influenced by enlarging the ramus height,
      mandibular body length than those of gonial angle.

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      목차 (Table of Contents)

      • Abstract
      • Ⅰ. 서론
      • Ⅱ. 재료 및 방법
      • 1. 두개안면골 모형 제작
      • 2. 비대칭 두개안면골 모형 형성
      • Abstract
      • Ⅰ. 서론
      • Ⅱ. 재료 및 방법
      • 1. 두개안면골 모형 제작
      • 2. 비대칭 두개안면골 모형 형성
      • 3. 3차원 영상촬영 및 자료입력
      • 4. 3차원 영상 분석
      • 5. 통계처리 및 자료분석
      • Ⅲ. 연구결과
      • 1. 두개안면골 모형의 표면적 비대칭 정도
      • 2. 비대칭 정도에 따른 표면적 비대칭 정도의 변화
      • 3. 비대칭 정도에 따른 menton 편위의 변화
      • Ⅳ. 총괄 및 고찰
      • Ⅴ. 결론
      • 참고문헌
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