Department of Orthodontics, School of Dentistry, University of Washington, 1959 NE Pacific St, Seattle, WA 98195, USA.
Human Photonics Lab, Department of Mechanical Engineering, University of Washington, 4000 Mason St, Seattle, WA 98195, USA.
Sensors (Basel). 2019 Mar 22;19(6):1419. doi: 10.3390/s19061419.
Several studies have shown that near-infrared imaging has great potential for the detection of dental caries lesions. A miniature scanning fiber endoscope (SFE) operating at near-infrared (NIR) wavelengths was developed and used in this study to test whether the device could be used to discriminate demineralized enamel from sound enamel. Varying depths of artificial enamel caries lesions were prepared on 20 bovine blocks with smooth enamel surfaces. Samples were imaged with a SFE operating in the reflectance mode at 1310-nm and 1460-nm in both wet and dry conditions. The measurements acquired by the SFE operating at 1460-nm show significant difference between the sound and the demineralized enamel. There was a moderate positive correlation between the SFE measurements and micro-CT measurements, and the NIR SFE was able to detect the presence of demineralization with high sensitivity (0.96) and specificity (0.85). This study demonstrates that the NIR SFE can be used to detect early demineralization from sound enamel. In addition, the NIR SFE can differentiate varying severities of demineralization. With its very small form factor and maneuverability, the NIR SFE should allow clinicians to easily image teeth from multiple viewing angles in real-time.
几项研究表明,近红外成像是检测龋齿病变的一种很有前途的方法。本研究开发了一种工作在近红外(NIR)波长的微型扫描光纤内窥镜(SFE),并测试了该设备是否可用于区分脱矿的釉质和健康的釉质。在 20 个具有光滑釉质表面的牛牙块上制备了不同深度的人工釉质龋损。使用工作在反射模式下的 SFE 在 1310nm 和 1460nm 波长下对样本进行成像,分别在湿态和干态下进行。SFE 在 1460nm 处的测量值在健康釉质和脱矿釉质之间存在显著差异。SFE 测量值与微 CT 测量值之间存在中度正相关,NIR SFE 能够以高灵敏度(0.96)和特异性(0.85)检测脱矿化的存在。本研究表明,NIR SFE 可用于检测健康釉质的早期脱矿化。此外,NIR SFE 可以区分不同严重程度的脱矿化。NIR SFE 具有非常小的外形尺寸和可操作性,应该允许临床医生在实时从多个观察角度轻松地对牙齿进行成像。