Korea Photonics Technology Institute, Medical Photonics Research Center, Gwangju, Republic of Korea.
J Biomed Opt. 2018 Jul;23(7):1-8. doi: 10.1117/1.JBO.23.7.076008.
We report herein the fabrication and performance response of a three-dimensional (3-D) intraoral scan probe based on optical coherence tomography (OCT) that enables 3-D structural and functional diagnoses of the human teeth. The OCT system was configured using a swept-source OCT (SS-OCT) with a center wavelength of 1310 nm. The scan probe was built using an MEMS mirror and an optical collimator. The implemented SS-OCT equipped with the MEMS-based scan probe yielded an axial resolution of 10 μm and a scan range of 8 × 8 mm2. Two-dimensional (2-D) cross-sectional images of the teeth were acquired by the scan probe based on the OCT. The 3-D volume image was acquired by combining a series of 2-D images, which includes internal and structural information of the human teeth. To utilize the OCT system as an intraoral scanner, partially overlapped 3-D volume images were sequentially acquired and stitched. The 3-D stitching was implemented based on an iterative closest point algorithm. The feasibility of the intraoral scan probe is demonstrated based on its ability to image and characterize the structure and function of the human teeth.
我们在此报告了一种基于光学相干断层扫描(OCT)的三维(3-D)口腔内扫描探头的制造和性能响应,该探头可实现人类牙齿的 3-D 结构和功能诊断。OCT 系统采用中心波长为 1310nm 的扫频源 OCT(SS-OCT)进行配置。扫描探头使用 MEMS 反射镜和光学准直器构建。所实现的基于 MEMS 的 SS-OCT 配备了扫描探头,其轴向分辨率为 10μm,扫描范围为 8×8mm2。基于 OCT,扫描探头获取牙齿的二维(2-D)横截面图像。通过组合一系列 2-D 图像获取 3-D 体积图像,其中包括人类牙齿的内部和结构信息。为了将 OCT 系统用作口腔内扫描仪,部分重叠的 3-D 体积图像被顺序获取并拼接。3-D 拼接基于迭代最近点算法实现。口腔内扫描探头的可行性基于其对人类牙齿的结构和功能进行成像和特征描述的能力得到证明。