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首页> 外文期刊>Journal of dentistry >3-D finite element simulation for ultrasonic propagation in tooth.
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3-D finite element simulation for ultrasonic propagation in tooth.

机译:超声波在牙齿中传播的3D有限元模拟。

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摘要

OBJECTIVES: Ultrasonic testing of the tooth has been suggested as an alternative method of identifying dental pathology. Due to the complex geometry and low transmission efficiency of ultrasonic signals in tooth structures, it is difficult to establish one-to-one correspondence between ultrasonic behaviour and specific tooth pathologies both in vitro and in vivo. In order to facilitate ultrasonic diagnosis in dental applications, finite element modeling (FEM) was used to simulate ultrasonic wave propagation in teeth with several dental conditions. METHODS: 3-D finite element tooth models were developed. The geometry of the tooth models was defined by 3-D images generated by scanning real tooth samples using an X-ray computerized tomography machine. Poro-elastic material was used to simulate the mechanical behaviour of the dentine. Numerical simulations of ultrasonic wave propagation were performed on the 3-D FEM models altered to mimic various dental conditions. The software ABAQUS was used as the calculator in the simulation. RESULTS: Excellent replication of ultrasonic behaviours by the FEM simulation was demonstrated through comparison of the simulation results with those of the actual ultrasonic testing on tooth specimens. Pathologies, such as caries, were also simulated on the finite element models. The unique influence of each dental condition on the patterns of ultrasonic waves propagating through the tooth (A-scan) was observed. CONCLUSIONS: Through FEM simulation, the influence of a particular dental pathology on ultrasonic wave pattern can be studied without the impact of other parameters. This will lead to a better understanding of how ultrasound could be applied to the diagnosis of pathology within teeth.
机译:目的:已建议对牙齿进行超声波检查,作为鉴定牙齿病理的另一种方法。由于超声信号在牙齿结构中的几何形状复杂且传输效率低,因此很难在体外和体内建立超声行为与特定牙齿病理之间的一一对应关系。为了方便在牙科应用中进行超声诊断,有限元建模(FEM)用于模拟超声波在几种牙科条件下在牙齿中的传播。方法:建立了3-D有限元牙齿模型。牙齿模型的几何形状是通过使用X射线计算机断层扫描仪扫描真实牙齿样本生成的3-D图像定义的。多孔弹性材料用于模拟牙本质的力学行为。超声波传播的数值模拟是在3-D FEM模型上进行的,该模型经过修改以模仿各种牙齿状况。模拟中使用了ABAQUS软件作为计算器。结果:通过将模拟结果与实际的牙齿样本超声测试结果进行比较,证明了通过FEM模拟能够很好地复制超声波行为。诸如龋齿之类的病理也可以在有限元模型上进行模拟。观察到每种牙齿状况对通过牙齿传播的超声波模式(A扫描)的独特影响。结论:通过有限元模拟,可以研究特定牙齿病理学对超声波型的影响,而不受其他参数的影响。这将使人们更好地了解如何将超声应用于牙齿内的病理诊断。

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