Applications of fluorescence microscopy to studies of dental hard tissue.

H. Matsumoto, S. Kitamura, T. Araki
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引用次数: 17

Abstract

In this review we describe applications of fluorescence microscopy to investigations of dental hard tissue. Many studies have shown that human teeth show autofluorescence and several applications of fluorescence microscopy have been reported, although the chemical nature of autofluorescence remains unknown. However, most applications are based on a static measurement mode, which has inherent limitations. These limitations can be overcome by the use of time-resolved fluorescence microscopy. Therefore, we attempted to combine ordinary and time-resolved fluorescence microscopy to study human dentine. Using stationary measurements, blue fluorescence with a peak of 440 +/- 10 nm and a width of approximately 100 nm was observed. Increases in fluorescence intensity were found to be dependent upon age and temperature, regardless of tooth type or gender. The results suggest that the aging mechanism for crown dentine differs from that for root dentine and that the observed increase in fluorescence intensity is partially due to a temperature-dependent physicochemical mechanism. We speculate that fluorescence microscopy will become a useful tool for analysis of dental hard tissue in several fields.
荧光显微镜在牙硬组织研究中的应用。
本文综述了荧光显微镜在牙硬组织研究中的应用。许多研究表明,人类牙齿显示出自身荧光,荧光显微镜的几种应用已经被报道,尽管自身荧光的化学性质仍然未知。然而,大多数应用程序都基于静态测量模式,这具有固有的局限性。这些限制可以通过使用时间分辨荧光显微镜来克服。因此,我们尝试将普通荧光显微镜和时间分辨荧光显微镜相结合来研究人类牙本质。使用固定测量,观察到峰值为440 +/- 10 nm,宽度约为100 nm的蓝色荧光。发现荧光强度的增加与年龄和温度有关,而与牙齿类型或性别无关。结果表明,冠状牙本质的老化机制与根状牙本质的老化机制不同,荧光强度的增加部分是由于温度依赖的理化机制。我们推测,荧光显微镜将成为一个有用的工具,分析牙齿硬组织在几个领域。
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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