Cattaneo Paolo M, Dalstra Michel, Melsen Birte
Department of Orthodontics, Royal Dental College, University of Aarhus, Denmark.
Am J Orthod Dentofacial Orthop. 2003 Apr;123(4):367-73. doi: 10.1067/mod.2003.73.
The morphology of the skeleton is known to reflect functional demand. A change in the intramaxillary position of molars can be expected to influence the transfer of occlusal forces to the facial skeleton. A finite element analysis allows us to simulate the displacement of a molar in relation to the well-defined morphology of the maxilla. Three 3-dimensional unilateral models of a maxilla from a skull with skeletal Class I and neutral molar relationships were produced based on CT-scan data. The maxillary first molar was localized so that the contour of the mesial root continued into the infrazygomatic crest. When the molar was loaded with occlusal forces, the stresses were transferred predominantly through the infrazygomatic crest. This changed when mesial and distal displacements of the molars were simulated. In the model with mesial molar displacement, a larger part of the bite forces were transferred through the anterior part of the maxilla, resulting in the buccal bone being loaded in compression. In the model with distal molar displacement, the posterior part of the maxilla was deformed through compression; this resulted in higher compensatory tensile stresses in the anterior part of the maxilla and at the zygomatic arch. This distribution of the occlusal forces might contribute to the posterior rotation often described as the orthopedic effect of extraoral traction.
骨骼形态已知会反映功能需求。磨牙在颌内位置的改变有望影响咬合力向面部骨骼的传递。有限元分析使我们能够模拟磨牙相对于上颌明确形态的位移。基于CT扫描数据制作了三个具有骨骼I类和中性磨牙关系的颅骨上颌三维单侧模型。上颌第一磨牙定位为使近中牙根轮廓延续至颧下嵴。当磨牙承受咬合力时,应力主要通过颧下嵴传递。当模拟磨牙近中向和远中向位移时,情况发生了变化。在磨牙近中位移的模型中,更大比例的咬合力通过上颌前部传递,导致颊侧骨受到压缩载荷。在磨牙远中位移的模型中,上颌后部因压缩而变形;这导致上颌前部和颧弓处出现更高的代偿性拉应力。这种咬合力的分布可能有助于解释常被描述为口外牵引正畸效应的后部旋转。