Zhang S F
Stomatological College, 4th Military Medical University, Xian.
Zhonghua Kou Qiang Yi Xue Za Zhi. 1992 Jan;27(1):6-8, 61.
A 3-dimensional finite element method was employed in this study to investigate the stress and displacement states of the maxillary complete denture and its underlying supporting tissues under the vertical occlusal force in centric occlusion. The calculation results show that the harmful transverse tension stresses within the base are concentrated on the maxillary incisor regions and its palatal area near the polishing surface. Pressure is exerted over most of the area of the jaw bone cortical surface and the compression stress is strongly concentrated over the alveolar ridge. The posterior palatal area of the denture base migrates away from the mucosa membrane and the other parts press the underlying tissues. These results indicate the biomechanical mechanism of the maxillary denture fracture and alveolar ridge resorption.
本研究采用三维有限元方法,研究上颌全口义齿及其下方支持组织在正中咬合垂直咬合力作用下的应力和位移状态。计算结果表明,基托内有害的横向拉应力集中在上颌切牙区及其靠近磨光面的腭侧区域。颌骨皮质表面的大部分区域受到压力,压应力强烈集中在牙槽嵴上。义齿基托的后腭部区域远离黏膜,其他部分压迫其下方组织。这些结果揭示了上颌义齿折断和牙槽嵴吸收的生物力学机制。