Abstract
Quantitative analysis of optical attenuation based on optical coherence tomography images will offer an effective method to enhance diagnostic capabilities. In this paper, the optical attenuation in demineralized caries specimens was calculated to distinguish between normal teeth and carious teeth and further to differentiate the severity of caries, and thus come to the half-automated diagnosis of dental caries. Results show that the attenuation coefficient in carious regions is approximately (Formula presented.), while that of normal teeth is about (Formula presented.). Attenuation coefficient of carious regions is 35% higher than that of normal teeth. Moreover, five classes of caries were qualified and classified based on the optical attenuation coefficient. Compared with the healthy teeth, there is a noticeable disparity in the attenuation coefficients of carious teeth, both on the surface and at the dentinoenamel junction. This study provides a method for accurate caries diagnosis, particularly in detection of early lesions and subtle structural changes.
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Fan, S., Yu, H., Guan, Z., Lv, F., Zhou, Z., & Dai, C. (2024). Diagnosis of dental caries based on attenuation coefficients analysis of optical coherence tomography images. Journal of Biophotonics, 17(7). https://doi.org/10.1002/jbio.202400031
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