Rudolph D J, Sameshima G T
University of California, School of Dentistry, Los Angeles, USA.
Angle Orthod. 2001 Apr;71(2):127-31. doi: 10.1043/0003-3219(2001)071<0127:AFEMOA>2.0.CO;2.
This study was undertaken to determine the types of orthodontic forces that cause high stress at the root apex. A 3-dimensional finite element model of a maxillary central incisor, its periodontal ligament (PDL), and alveolar bone was constructed on the basis of average anatomic morphology. The maxillary central incisor was chosen for study because it is one of the teeth at greatest risk for apical root resorption. The material properties of enamel, dentin, PDL, and bone and 5 different load systems (tipping, intrusion, extrusion, bodily movement, and rotational force) were tested. The finite element analysis showed that purely intrusive, extrusive, and rotational forces had stresses concentrated at the apex of the root. The principal stress from a tipping force was located at the alveolar crest. For bodily movement, stress was distributed throughout the PDL; however, it was concentrated more at the alveolar crest. We conclude that intrusive, extrusive, and rotational forces produce more stress at the apex. Bodily movement and tipping forces concentrate forces at the alveolar crest, not at the apex.
本研究旨在确定在根尖处产生高应力的正畸力类型。基于平均解剖形态构建了上颌中切牙及其牙周膜(PDL)和牙槽骨的三维有限元模型。选择上颌中切牙进行研究是因为它是根尖吸收风险最高的牙齿之一。测试了釉质、牙本质、牙周膜和骨的材料特性以及5种不同的加载系统(倾斜、压入、挤出、整体移动和旋转力)。有限元分析表明,单纯的压入、挤出和旋转力在根尖处有应力集中。倾斜力产生的主应力位于牙槽嵴处。对于整体移动,应力分布在整个牙周膜;然而,它更多地集中在牙槽嵴处。我们得出结论,压入、挤出和旋转力在根尖处产生更多应力。整体移动和倾斜力将力集中在牙槽嵴处,而非根尖处。