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首页> 外文期刊>Journal of Dental Research: Official Publication of the International Association for Dental Research >Viscoelasticity of human oral mucosa: implications for masticatory biomechanics.
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Viscoelasticity of human oral mucosa: implications for masticatory biomechanics.

机译:人类口腔粘膜的粘弹性:对咀嚼生物力学的影响。

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摘要

The dynamic behavior of oral soft tissues supporting removable prostheses is not well understood. We hypothesized that the stress and strain of the mucosa exhibited time-dependent behavior under masticatory loadings. Displacement of the mucosa on the maxillary residual ridge was measured in vivo by means of a magnetic actuator/sensor under vertical loading in partially edentulous individuals. Subject-specific finite element models of homogeneous bone and mucosa were constructed based on computed tomography images. A mean initial elastic modulus of 8.0 x 10(-5) GPa and relaxation time of 494 sec were obtained from the curve adaptation of the finite element output to the in vivo time-displacement relationship. Delayed increase of the maximum compressive strain on the surface of the mucosa was observed under sustained load, while the maximum strain inside the mucosa was relatively low and uninfluenced by the duration of the load. The compressive stress showed a slight decrease with sustained load, due to stress relaxation of the mucosa. On simulation of cyclic load, the increment of the maximum strain and the evidence of residual strain were revealed after each loading. The results support our hypothesis, and suggest that sustained and repetitive loads accumulate as surface strain on the mucosa.
机译:口腔软组织支持可移动假体的动力学行为尚不十分清楚。我们假设粘膜的应力和应变在咀嚼负荷下表现出时间依赖性行为。在垂直无负荷的情况下,在部分缺牙的个体中,通过磁致动器/传感器在体内测量上颌残余上粘膜的位移。基于计算机断层扫描图像,构建了特定对象的均质骨和粘膜的有限元模型。从输出的有限元曲线到体内时间-位移关系的曲线适应性获得了8.0 x 10(-5)GPa的平均初始弹性模量和494秒的松弛时间。在持续载荷下,粘膜表面最大压缩应变的延迟增加被观察到,而粘膜内部的最大应变相对较低,并且不受载荷持续时间的影响。由于粘膜应力松弛,压应力随持续载荷而略有下降。在模拟循环载荷时,每次载荷后最大应变的增加和残余应变的证据被揭示出来。结果支持我们的假设,并表明持续的和重复的负荷随着粘膜上的表面应变而累积。

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