IEEE Trans Biomed Eng. 2022 Sep;69(9):2755-2766. doi: 10.1109/TBME.2022.3153209. Epub 2022 Aug 19.
The ability to detect dental caries at early stages lies at the heart of minimal intervention dentistry, enabling the curing or arresting of carious lesions before they advance to the cavity stage. Enhanced truncated-correlation photothermal coherence tomography (eTC-PCT) using mid-wave infrared (MWIR) cameras has recently been shown to offer tomographic visualization of early caries. The tomographic slicing ability of such systems, however, is believed to be limited by direct radiative thermal emission through the translucent dental enamel in the 3-5 µm MWIR spectral range. Such radiative emissions can dominate the delayed conductive thermal contributions needed for tomographic reconstruction of internal dental defects. It has been hypothesized that long-wave infrared (LWIR) eTC-PCT systems may offer better tomographic performance by taking advantage of the intrinsic attenuation of direct radiative emission by dental enamel in the LWIR spectral range, enabling more effective delayed conductive thermal contributions from subsurface caries. More than an order of magnitude lower cost of the system is another key attribute of LWIR eTC-PCT which can open the door for downstream translation of the technology to clinics. In this report, we offer a systematic comparison of the performance/effectiveness of caries detection with LWIR and MWIR eTC-PCT systems for detecting natural caries, bacterial caries, and artificially demineralized enamel surfaces. Our results suggest that the low-cost LWIR based eTC-PCT system provides 3D visualization and 2D slice-by-slice images of early caries and internal micro-cracks similar to those obtained from the more expensive MWIR-based eTC-PCT system, albeit with ∼1.3dB lower signal-to-noise ratio.
早期发现龋齿的能力是微创牙科的核心,它可以在龋齿病变进展到龋洞阶段之前进行治疗或阻止。最近,使用中波红外(MWIR)相机的增强截断相关光热相干层析成像(eTC-PCT)已被证明可以对早期龋齿进行层析成像可视化。然而,此类系统的层析切片能力被认为受到半透明牙釉质在 3-5 µm MWIR 光谱范围内的直接辐射热发射的限制。这种辐射发射可以主导用于内部牙齿缺陷层析重建的延迟传导热贡献。人们假设长波红外(LWIR)eTC-PCT 系统可以通过利用牙釉质在 LWIR 光谱范围内对直接辐射发射的固有衰减来提供更好的层析性能,从而从表面下龋齿获得更有效的延迟传导热贡献。系统成本降低一个数量级以上是 LWIR eTC-PCT 的另一个关键属性,它可以为该技术向临床的下游转化打开大门。在本报告中,我们系统地比较了 LWIR 和 MWIR eTC-PCT 系统在检测天然龋齿、细菌性龋齿和人工脱矿釉质表面方面的性能/有效性。我们的结果表明,低成本的基于 LWIR 的 eTC-PCT 系统可以提供早期龋齿和内部微裂纹的 3D 可视化和 2D 逐片图像,与更昂贵的基于 MWIR 的 eTC-PCT 系统获得的图像相似,尽管信号噪声比低约 1.3dB。