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Bio-Photonic Detection and Quantitative Evaluation Method for the Progression of Dental Caries Using Optical Frequency-Domain Imaging Method

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2016

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MDPI
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Wijesinghe, Ruchire Eranga, Nam Hyun Cho, Kibeom Park, Mansik Jeon, and Jeehyun Kim. 2016. “Bio-Photonic Detection and Quantitative Evaluation Method for the Progression of Dental Caries Using Optical Frequency-Domain Imaging Method.” Sensors (Basel, Switzerland) 16 (12): 2076. doi:10.3390/s16122076. http://dx.doi.org/10.3390/s16122076.

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Abstract

The initial detection of dental caries is an essential biomedical requirement to barricade the progression of caries and tooth demineralization. The objective of this study is to introduce an optical frequency-domain imaging technique based quantitative evaluation method to calculate the volume and thickness of enamel residual, and a quantification method was developed to evaluate the total intensity fluctuation in depth direction owing to carious lesions, which can be favorable to identify the progression of dental caries in advance. The cross-sectional images of the ex vivo tooth samples were acquired using 1.3 μm spectral domain optical coherence tomography system (SD-OCT). Moreover, the advantages of the proposed method over the conventional dental inspection methods were compared to highlight the potential capability of OCT. As a consequence, the threshold parameters obtained through the developed method can be used as an efficient investigating technique for the initial detection of demineralization.

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optical frequency domain imaging (OFDI), optical coherence tomography, dental caries, demineralization, Bio-photonic detection

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