Mankani N, Chowdhary R, Mahoorkar S
Department of Prosthodontics, P. M. Nadagowda Dental College, Bagalkot, India.
Department of Prosthodontics, S. Nijalingappa Institute of Dental Sciences and Research, Gulbarga, 585105 India.
J Indian Prosthodont Soc. 2013 Sep;13(3):212-9. doi: 10.1007/s13191-012-0193-y. Epub 2012 Nov 20.
To evaluate the pattern of stress dissipation underneath the complete denture with various angled posterior teeth in both maxillary and mandibular arch. A 3D finite element models of residual ridge, mucosa, denture base in the coronal section were created from the dentures obtained from a patient, which were scanned and modeled. The coronal portion of the teeth was altered to stimulate the cuspal inclination of 0°, 20° and 33°, thus making the models. Special area of interest in bone, denture were selected to record the stresses. An vertical static load of 100N was applied through the mandibular model to the maxillary model. von Mises stresses developed in all the models were interpreted. Statistical analysis for comparison of stress values with different variables (0°-20°, 0°-33°, and 20°-33°) in various predefined areas of coronal section model was done using Student's t test (paired). Stress of greater magnitude were observed with cuspal teeth i.e. 33° and 20°, where as 0° showed slightly less magnitude of stresses.
评估在上颌和下颌牙弓中使用不同角度后牙的全口义齿下方的应力消散模式。从一名患者的义齿创建了冠状面剩余牙槽嵴、黏膜、义齿基托的三维有限元模型,对其进行扫描和建模。改变牙齿的冠状部分以模拟0°、20°和33°的牙尖斜度,从而制作模型。选择骨骼、义齿中的特殊感兴趣区域来记录应力。通过下颌模型对上颌模型施加100N的垂直静载。解释所有模型中产生的von Mises应力。使用配对t检验对冠状面模型各个预定义区域中不同变量(0°-20°、0°-33°和20°-33°)的应力值进行比较的统计分析。观察到牙尖斜度为33°和20°的牙齿处应力值更大,而0°时应力值略小。