人体第三磨牙DEJ的纳米力学与拉曼光谱耦合研究。

Journal of dental biomechanics Pub Date : 2010-01-01 Epub Date: 2009-08-12 DOI:10.4061/2010/256903
R R Gallagher, M Balooch, G Balooch, R S Wilson, S J Marshall, G W Marshall
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引用次数: 17

摘要

牙本质-牙釉质连接处(DEJ)将覆盖牙齿外表面的牙釉质与较厚的底层牙本质连接起来。DEJ是一个关键的界面,允许连接这些材料具有广泛不同的机械性能。基于原子力显微镜的纳米压痕和拉曼显微光谱测定了人磨牙DEJ的宽度和组成。沿着沿牙髓表面每隔2 μm形成的压痕线测定牙釉质、牙本质和牙髓表面的压痕弹性模量和硬度。在最大载荷下,在压痕线的两端制作的压痕被用来制作可见标记,允许拉曼显微光谱在DEJ上间隔1 μm,同时使用纳米压痕标记进行定向和定位。基于纳米压痕和拉曼光谱的结果,估计了功能DEJ宽度。基于硬度的DEJ宽度估计范围为4.7(±1.2)μm至6.1(±1.9)μm,基于模量的DEJ宽度估计范围为4.9(±1.1)μm至6.9(±1.9)μm。基于拉曼峰强度变化的DEJ宽度在磷酸盐峰为8.0(±3.2)~ 8.5(±3.1)μm之间,C-H拉伸模式为7.6(±3.2)~ 8.0(±2.6)μm之间。这些估计是在使用纳米压痕报告的DEJ宽度估计的范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Coupled Nanomechanical and Raman Microspectroscopic Investigation of Human Third Molar DEJ.

The dentino-enamel junction (DEJ) connects enamel, that covers the outer surface of a tooth, to a thicker underlying dentin. The DEJ is a critical interface that permits joining these materials that have widely dissimilar mechanical properties. AFM-based nanoindentation and Raman microspectroscopy were used to define the width and composition of human molar DEJ. Indentation elastic modulus and hardness of enamel, dentin, and DEJ were determined along lines of indents made at 2 μm intervals across the DEJ. Indents made at maximum loads at each end of the indent lines were used to make visible markers allowing Raman microspectroscopy at 1 μm intervals across the DEJ, while using the nanoindent markers for orientation and location. Functional DEJ width estimates were made based on results from nanoindentation and Raman microspectroscopy. DEJ width estimates ranged from 4.7 (±1.2) μm to 6.1 (±1.9) μm based on hardness and 4.9 (±1.1) μm to 6.9 (±1.9) μm based on modulus. DEJ width based on Raman peak intensity variations were 8.0 (±3.2) μm to 8.5 (±3.1) μm based on the phosphate peak, and 7.6 (±3.2) μm to 8.0 (±2.6) μm for C-H stretching mode. These estimates are in the range of DEJ width estimates reported using nanoindentation.

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