Abstract
두개안면부에서 하악은 태생 4주에 발생하는 첫번째 아가미궁에서 분화되며 맥켈연골이라 알려져 있는 긴 막대기 모양의 연골의 외측부에서 골화가 시작된다. 이후 하악골은 골의 첨가와 흡수에 의해 성장 발육하게 된다. 이런 하악골의 성장 발육이 과하거나 부족한 경우 상하악골의 부조화에 의한 부정교합이 발생되게 되고, 이를 3급 또는 2급 부정교합이라 부른다. 3급 부정교합의 치료를 위해 지금까지 많은 방법들이 사용되어 왔으며, 그중 가장 널리 사용되어지는것이 이모장치이다. Distraction osteogenesis는 강한 힘이나 수술에 의해 분리된 두 개의 골표면 사이에서 새로운 신생골이 형성되는 일련의 생물학적인 과정을 말한다. Distraction force가 callus tissue에 작용되어 골이 분리되면 골과 연조직에 가해지는 신장력이 새로운 골 생성을 자극하게 된다. 이번 연구의 목적은 3차원 유한요소 model을 이용하여 이모장치의 하중에 대한 하악골의 응력분포를 알아보고, 하악골 절개 (mandibular midline distraction) 후 강제변형에 대한 응력분포를 알아보는 것이다. The aims of this study were analyze the amount of stress condition when the traction force was applied to the condyle head from the chin area of mandible and amount of distortion condition when intended 0.5 mm distraction distance from surface or one point of dissected midline of mandible. For this study, 3D finite element analysis were performed. The following results were obtained : 1. When traction force of 500 g was applied to the condyle head from the chin area, condylar neck area showed the greatest amount of stress and coronoid process was the least amount of stress area. For the amount of distortion condition, infra dental area showed the greatest. 2. When 0.5 mm of intended surface distortion was applied after dissection of mid-mandible area, base anterior area showed the greatest amount of stress but the least stress area was coronoid process. For the amount of distortion, infra dental, menton area showed the greatest amount. 3. One point distortion was applied after dissection of mid-mandible area, ramus posterior area showed the greatest amount of stress and menton area were the least stress condition. For the amount of distortion, menton area showed the greatest amount of distortion condition.
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