Palamara J E A, Palamara D, Messer H H
School of Dental Science, The University of Melbourne, Victoria.
Aust Dent J. 2002 Sep;47(3):218-22. doi: 10.1111/j.1834-7819.2002.tb00332.x.
The marginal ridge is considered fundamental to the ability of the tooth to resist functional and parafunctional occlusal loads without damage. Despite this role, very little is known of patterns of stress and strain in marginal ridges under load. This study investigated strains in proximal enamel of mandibular premolars using finite element analysis (FEA) and strain gauge measurements.
A three-dimensional FEA model of a human mandibular premolar was developed using commercial FEA software, and strains were computed in response to loads simulating clenching and chewing functions. Strains were measured in extracted premolars using strain gauges mounted on the proximal surfaces, under similar occlusal loading conditions.
Strains in the vicinity of contact areas and marginal ridges were lower than near the cemento-enamel junction and on buccal and lingual surfaces. The magnitude of proximal strains increased with oblique loading on cuspal inclines. Finite element analysis results correlated well with strain gauge measurements and can be used to predict strain directions and magnitudes.
At least for mandibular premolars, the marginal ridges are not highly stressed areas during simulated occlusal loading.
边缘嵴被认为对于牙齿在承受功能和非功能咬合负荷时不发生损伤的能力至关重要。尽管有此作用,但对于负荷作用下边缘嵴的应力和应变模式却知之甚少。本研究使用有限元分析(FEA)和应变片测量法研究下颌前磨牙近中釉质的应变情况。
使用商业有限元分析软件建立人下颌前磨牙的三维有限元分析模型,并针对模拟紧咬和咀嚼功能的负荷计算应变。在类似的咬合负荷条件下,使用安装在近中表面的应变片测量拔除的前磨牙的应变。
接触区域和边缘嵴附近的应变低于牙骨质-釉质界附近以及颊面和舌面的应变。近中应变的大小随牙尖斜面的斜向负荷而增加。有限元分析结果与应变片测量结果相关性良好,可用于预测应变方向和大小。
至少对于下颌前磨牙,在模拟咬合负荷期间边缘嵴并非高应力区域。