首页> 外文期刊>European journal of orthodontics >Experimental and numerical determination of initial tooth mobility and material properties of the periodontal ligament in rat molar specimens.
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Experimental and numerical determination of initial tooth mobility and material properties of the periodontal ligament in rat molar specimens.

机译:实验和数值确定大鼠磨牙标本中初始牙的活动度和牙周膜的材料特性。

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摘要

The mechanical parameters of the periodontal ligament (PDL) in rat specimens were investigated in a combined experimental and numerical approach. Tooth mobility of the rat mandibular first molar was measured in vitro using a high precision experimental set-up. Finite element models (FEM) were developed, based on histological sections of the measured specimens, to simulate tooth mobility numerically under the same force systems as used in the experiment. Force/deflection curves from the measurements showed a significant non-linear behaviour of elastic stiffness of the PDL. A bilinear material parameter set was assumed to simulate tooth deflections. The numerical force/deflection curves were fitted to the experimental curves by repeatedly calculating theoretical tooth deflections and varying the parameters describing the non-linearity. Mean values of E1 = 0.15 MPa, E2 = 0.60 MPa and an ultimate strain of epsilon12 = 6.3 per cent were derived for the elastic behaviour of the rat PDL. Comparing fresh specimens and those frozen in a 0.9 per cent saline solution, differences between the measurements were significant. Using the agent, Periston, for freezing significantly reduced the deviation. The results indicated that strains in the PDL with a maximum of 14 per cent at the furcation were 10(4) times higher than strains in the bone, while the variability of stress values in both PDL and bone was not significant.
机译:结合实验和数值方法研究了大鼠标本中牙周膜的力学参数。使用高精度实验装置在体外测量大鼠下颌第一磨牙的牙齿移动性。基于被测样品的组织学切片,开发了有限元模型(FEM),以在与实验中相同的力系统下数值模拟牙齿的活动性。测量的力/挠度曲线显示出PDL的弹性刚度具有明显的非线性行为。假设使用双线性材料参数集来模拟牙齿变形。通过反复计算理论齿的挠度并改变描述非线性的参数,将数值力/​​挠度曲线拟合到实验曲线。对于大鼠PDL的弹性行为,得出E1 = 0.15 MPa,E2 = 0.60 MPa的平均值和epsilon12的极限应变= 6.3%。比较新鲜标本和在0.9%盐溶液中冷冻的标本,测量值之间存在显着差异。使用Periston剂冷冻可显着降低偏差。结果表明,PDL中分叉处的最大应变为14%,比骨骼中的应变高10(4)倍,而PDL和骨骼中的应力值的变异性均不显着。

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