首页> 外文会议>Optical Technologies in Biophysics and Medicine VII; Progress in Biomedical Optics and Imaging; vol.7 no.36 >Fiber Optic spectrophotometry to monitor early enamel remineralization and remineralization in vitro
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Fiber Optic spectrophotometry to monitor early enamel remineralization and remineralization in vitro

机译:光纤分光光度法监测早期釉质的再矿化和体外再矿化

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In this study Fiber Optic Backscatter Spectroscopic Sensor (FOBSS) is used to monitor the demineralization and remineralization induced changes in the enamel. Application of visible light spectroscopy offers different advantages such as rapid sensing, high spatial resolution, sensitivity, simultaneous examination of wide wavelengths, and permits the application of fiber optic probes. A bifurcated fiber optic bundle probe connected to a visible light source and a high resolution spectrophotometer was used to acquire the backscattered light from the specimen surface. These experiments showed that demineralization and remineralization processes induced a linear decrease in the backscatter light intensity and linear increase in the backscatter light intensity respectively. These experiments highlight the potential advantage of using fiber optic backscatter spectroscopy to determine early enamel demineralization and remineralization.
机译:在这项研究中,使用光纤背散射光谱传感器(FOBSS)来监测脱盐和再矿化引起的牙釉质变化。可见光光谱法的应用提供了不同的优势,例如快速传感,高空间分辨率,灵敏度,同时检查宽波长,并允许使用光纤探针。连接到可见光源和高分辨率分光光度计的分叉光纤束探头用于从样品表面获取反向散射光。这些实验表明,去矿质和再矿化过程分别引起了反向散射光强度的线性下降和反向散射光强度的线性增加。这些实验凸显了使用光纤反向散射光谱法确定早期牙釉质脱矿质和再矿化的潜在优势。

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