Application of optical and spectroscopic technologies for the characterization of carious lesions in vitro
- PMID: 30144381
- DOI: 10.1515/bmt-2017-0133
Application of optical and spectroscopic technologies for the characterization of carious lesions in vitro
Abstract
The detection of the beginning demineralization process of dental hard tissue remains a challenging task in dentistry. As an alternative to bitewing radiographs, optical and spectroscopic technologies showed promising results for caries diagnosis. The aim of the present work is to give an overview of optical and spectroscopic properties of healthy and carious human teeth in vitro by means of Raman spectroscopy (RS), optical coherence tomography (OCT) and hyperspectral imaging (HSI). OCT was able to represent microstructural changes below the enamel surface and revealed increased scattering for white spot lesions and a white scattering trail for deeper lesions. HSI showed similar absorbance characteristics for healthy and demineralized enamel over the entire spectrum and a characteristic absorbance peak at 550 nm for discolored lesions. Already at early carious stages (white spot), we found a distinct loss of hydroxylapatite-related intensity at 959 cm-1 in demineralized regions with RS. Healthy and demineralized tooth surfaces can be distinguished at different signal levels by means of RS, OCT and HSI. The presented modalities provide additional information to the current clinical diagnosis of caries such as microstructural changes, quantification of the demineralization and imaging of caries-related chemical changes.
Keywords: Raman spectroscopy; caries diagnosis; hyperspectral imaging; optical coherence tomography.
References
-
- Son S-A, Jung K-H, Ko C-C, Kwon YH. Spectral characteristics of caries-related autofluorescence spectra and their use for diagnosis of caries stage. J Biomed Opt 2016;21:15001.
-
- Chen Q, Zhu H, Xu Y, Lin B, Chen H. Discrimination of dental caries using colorimetric characteristics of fluorescence spectrum. Caries Res 2015;49:401–7.
-
- Buchalla W, Lennon AM, Attin T. Fluorescence spectroscopy of dental calculus. J Periodontal Res 2004;39:327–32.
-
- Lennon ÁM, Attin T, Martens S, Buchalla W. Fluorescence-aided caries excavation (FACE), caries detector, and conventional caries excavation in primary teeth. Pediatr Dent 2009;31:316–9.
-
- Angelino K, Edlund DA, Shah P. Near-infrared imaging for detecting caries and structural deformities in teeth. IEEE J Transl Eng Heal Med 2017;5:2300107.
MeSH terms
Substances
LinkOut - more resources
Full Text Sources
Other Literature Sources
Medical
Research Materials