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用于羟基磷灰石基生物材料定量晶体学分析的振动算法:II,应用于龋齿。

Vibrational algorithms for quantitative crystallographic analyses of hydroxyapatite-based biomaterials: II, application to decayed human teeth.

作者信息

Adachi Tetsuya, Pezzotti Giuseppe, Yamamoto Toshiro, Ichioka Hiroaki, Boffelli Marco, Zhu Wenliang, Kanamura Narisato

机构信息

Department of Dental Medicine, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kamigyo-ku, 465 Kajii-cho, Kawaramachi dori, Kyoto, 602-0841, Japan.

出版信息

Anal Bioanal Chem. 2015 May;407(12):3343-56. doi: 10.1007/s00216-015-8539-z. Epub 2015 Mar 10.

Abstract

A systematic investigation, based on highly spectrally resolved Raman spectroscopy, was undertaken to research the efficacy of vibrational assessments in locating chemical and crystallographic fingerprints for the characterization of dental caries and the early detection of non-cavitated carious lesions. Raman results published by other authors have indicated possible approaches for this method. However, they conspicuously lacked physical insight at the molecular scale and, thus, the rigor necessary to prove the efficacy of this spectroscopy method. After solving basic physical challenges in a companion paper, we apply them here in the form of newly developed Raman algorithms for practical dental research. Relevant differences in mineral crystallite (average) orientation and texture distribution were revealed for diseased enamel at different stages compared with healthy mineralized enamel. Clear spectroscopy features could be directly translated in terms of a rigorous and quantitative classification of crystallography and chemical characteristics of diseased enamel structures. The Raman procedure enabled us to trace back otherwise invisible characteristics in early caries, in the translucent zone (i.e., the advancing front of the disease) and in the body of lesion of cavitated caries.

摘要

基于高光谱分辨拉曼光谱法进行了一项系统研究,以探究振动评估在定位化学和晶体指纹方面的功效,用于龋齿的表征和非龋洞性龋损的早期检测。其他作者发表的拉曼结果表明了该方法的可能途径。然而,他们明显缺乏分子尺度上的物理见解,因此缺乏证明这种光谱方法有效性所需的严谨性。在一篇配套论文中解决了基本物理挑战后,我们在此将其应用于新开发的拉曼算法形式,用于实际的牙科研究。与健康矿化牙釉质相比,揭示了不同阶段患病牙釉质在矿物微晶(平均)取向和织构分布方面的相关差异。清晰的光谱特征可以直接转化为对患病牙釉质结构的晶体学和化学特征进行严格定量分类。拉曼程序使我们能够追溯早期龋齿、透明区(即疾病进展前沿)和龋洞性龋齿病变主体中原本不可见的特征。

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