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釉质决定整颗牙齿的变形:一种通过计量方法验证的有限元模型研究。

Enamel dictates whole tooth deformation: a finite element model study validated by a metrology method.

机构信息

Department of Structural Biology, Weizmann Institute of Science, Rehovot, Israel.

出版信息

J Struct Biol. 2009 Dec;168(3):511-20. doi: 10.1016/j.jsb.2009.07.019. Epub 2009 Jul 25.

Abstract

In order to understand whole tooth behavior under load the biomechanical role of enamel and dentin has to be determined. We approach this question by comparing the deformation pattern and stiffness of intact teeth under load with the deformation pattern and stiffness of the same teeth after the enamel has been mechanically compromised by introducing a defect. FE models of intact human premolars, based on high resolution micro-CT scans, were generated and validated by in vitro electronic speckle pattern interferometry (ESPI) experiments. Once a valid FE model was established, we exploit the flexibility of the FE model to gain more insight into whole tooth function. Results show that the enamel cap is an intrinsically stiff biological structure and its morphology dictates the way a whole tooth will mechanically behave under load. The mechanical properties of the enamel cap were sufficient to mechanically maintain almost its entire stiffness function under load even when a small defect (cavity simulating caries) was introduced into its structure and breached the crown integrity. We conclude that for the most part, that enamel and not dentin dictates the mechanical behavior of the whole tooth.

摘要

为了理解牙齿在受力下的整体行为,必须确定牙釉质和牙本质的生物力学作用。我们通过比较完整牙齿在受力下的变形模式和刚性,以及在牙釉质因引入缺陷而受到机械损伤后相同牙齿的变形模式和刚性,来探讨这个问题。基于高分辨率微 CT 扫描的完整人类前磨牙的有限元模型已经生成,并通过体外电子散斑干涉测量(ESPI)实验进行了验证。一旦建立了有效的有限元模型,我们就利用有限元模型的灵活性来更深入地了解整个牙齿的功能。结果表明,牙釉质帽是一种固有刚性的生物结构,其形态决定了整颗牙齿在受力下的机械行为方式。牙釉质帽的机械性能足以在受力下机械地保持其几乎全部的刚度,即使在其结构中引入了一个小缺陷(模拟龋齿的腔)并破坏了牙冠的完整性。我们的结论是,在很大程度上,是牙釉质而不是牙本质决定了整个牙齿的机械行为。

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