Akkus Anna, Yang Shan, Roperto Renato, Mustafa Hathem, Teich Sorin, Akkus Ozan
PhD, CWRU School of Dental Medicine, 2124 Cornell Road, Cleveland, OH 44106-4905.
PhD, Jackson State University, Department of Physics, Atmospheric Science and Geophysics, 1400 John R. Lynch St Jackson, MS 39217.
J Clin Exp Dent. 2017 Feb 1;9(2):e238-e241. doi: 10.4317/jced.53185. eCollection 2017 Feb.
Measurement of tooth enamel mineralization using a clinically viable method is essential since variation of mineralization may be used to monitor caries risk or in assessing the effectiveness of remineralization therapy. Fiber optic Raman systems are becoming more affordable and popular in context of biomedical applications. However, the applicability of fiber optic Raman systems for measurement of mineral content within enamel tissue has not been elucidated significantly in the prior literature.
Human teeth with varying degrees of enamel mineralization were selected. In addition alligator, boar and buffalo teeth which have increasing amount of mineral content, respectively, were also included as another set of samples. Reference Raman measurements of mineralization were performed using a high-fidelity confocal Raman microscope.
Analysis of human teeth by research grade Raman system indicated a 2-fold difference in the Raman intensities of v1 symmetric-stretch bands of mineral-related phosphate bonds and 7-fold increase in mineral related Raman intensities of animal teeth. However, fiber optic system failed to resolve the differences in the mineralization of human teeth.
These results indicate that the sampling volume of fiber optic systems extends to the underlying dentin and that confocal aperture modification is essential to limit the sampling volume to within the enamel. Further research efforts will focus on putting together portable Raman systems integrated with confocal fiber probe. Enamel, mineral content, raman spectroscopy.
由于矿化程度的变化可用于监测龋齿风险或评估再矿化治疗的效果,因此使用临床可行的方法测量牙釉质矿化至关重要。在生物医学应用中,光纤拉曼系统正变得越来越经济实惠且受欢迎。然而,在先前的文献中,光纤拉曼系统在测量牙釉质组织内矿物质含量方面的适用性尚未得到充分阐明。
选择了不同程度牙釉质矿化的人类牙齿。此外,还包括鳄鱼、野猪和水牛的牙齿,它们的矿物质含量分别递增,作为另一组样本。使用高保真共聚焦拉曼显微镜对矿化进行参考拉曼测量。
研究级拉曼系统对人类牙齿的分析表明,与矿物质相关的磷酸盐键的v1对称拉伸带的拉曼强度存在2倍差异,动物牙齿与矿物质相关的拉曼强度增加了7倍。然而,光纤系统未能分辨出人类牙齿矿化的差异。
这些结果表明,光纤系统的采样体积延伸到了下方的牙本质,并且共聚焦孔径的修改对于将采样体积限制在牙釉质内至关重要。进一步的研究工作将集中于组装集成共聚焦光纤探头的便携式拉曼系统。牙釉质、矿物质含量、拉曼光谱学。