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关于健全和矿化不足釉质的结构-性能关系

On the structure-property relationship of sound and hypomineralized enamel.

作者信息

Xie Z-H, Mahoney E K, Kilpatrick N M, Swain M V, Hoffman M

机构信息

School of Materials Science and Engineering, University of New South Wales, NSW, Australia.

出版信息

Acta Biomater. 2007 Nov;3(6):865-72. doi: 10.1016/j.actbio.2007.05.007. Epub 2007 Jun 26.

Abstract

Developmental defects in dental enamel pose significant clinical challenges which have highlighted our limited understanding of the structure and properties of this tissue. In this study, we first investigated the contact-size dependence of the physical properties of sound and hypomineralized enamel, and then examined the microstructure to establish a structural basis for their differing properties. Depth-sensing indentation tests were carried out over a wide range of peak loads in a direction perpendicular to the enamel prisms. Hypomineralized enamel demonstrated stronger penetration dependence for measured hardness and elastic modulus than sound enamel. The microstructure of sound and hypomineralized enamel was observed using field emission scanning electron microscopy and transmission electron microscopy with support of a focused ion beam milling system. Images of sound enamel showed barely distinguishable sheath regions with minimal organic presence. In contrast, hypomineralized enamel showed thicker sheath structures surrounding the prisms and higher levels of organic content within both the prisms and the sheath regions. It is argued that the higher organic content within prism structure was responsible for an initial lower hardness and elastic modulus of hypomineralized enamel under low-load indentation. As the indentation depth increased, the thicker organic-rich sheath regions played a more important role in reducing the mechanical properties of the hypomineralized enamel. On the basis of Spears finite element model [Spears IR. A three-dimensional finite element model of prismatic enamel: a re-appraisal of the data on the Young's modulus of enamel. J Dental Res 1997; 76(10):1690-97], elastic moduli of sound and hypomineralized enamel were predicted, which matched experimental results.

摘要

牙釉质发育缺陷带来了重大的临床挑战,这凸显了我们对该组织结构和特性的了解有限。在本研究中,我们首先研究了健全牙釉质和矿化不足牙釉质物理性能的接触尺寸依赖性,然后检查了微观结构,以建立其不同性能的结构基础。在垂直于釉柱的方向上,在很宽的峰值载荷范围内进行了深度传感压痕试验。与健全牙釉质相比,矿化不足牙釉质在测量硬度和弹性模量方面表现出更强的压入依赖性。在聚焦离子束铣削系统的支持下,使用场发射扫描电子显微镜和透射电子显微镜观察了健全牙釉质和矿化不足牙釉质的微观结构。健全牙釉质的图像显示,几乎无法区分的鞘区域,有机成分极少。相比之下,矿化不足牙釉质显示出围绕棱柱体的鞘结构更厚,棱柱体和鞘区域内的有机成分含量更高。有人认为,棱柱体结构中较高的有机成分是矿化不足牙釉质在低载荷压痕下初始硬度和弹性模量较低的原因。随着压痕深度的增加,较厚的富含有机物的鞘区域在降低矿化不足牙釉质的力学性能方面发挥了更重要的作用。基于斯皮尔斯有限元模型[斯皮尔斯IR。棱柱形牙釉质的三维有限元模型:对牙釉质杨氏模量数据的重新评估。《牙科研究杂志》1997年;76(10):1690 - 97],预测了健全牙釉质和矿化不足牙釉质的弹性模量,其与实验结果相符。

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