首页> 外国专利> VISUAL IMAGING DEVICE BASED ON PS-OCT FOR EARLY DEMINERALIZATION AND CARIES OF DENTAL HARD TISSUES

VISUAL IMAGING DEVICE BASED ON PS-OCT FOR EARLY DEMINERALIZATION AND CARIES OF DENTAL HARD TISSUES

机译:基于PS-OTT的视觉成像装置,用于早期脱矿质和龋齿组织的龋齿

摘要

Disclosed is a visual imaging device based on PS-OCT for early demineralization and caries of dental hard tissues, comprising a laser light source for emitting a laser light, a coupler for receiving and dividing the laser light emitted by the laser light source into a reference laser light and a detection laser light; wherein the reference laser light backtracking to the coupler and the detection laser light backtracking to the coupler are coupled and then passed through a transmission grating and a convex lens to input as an optical signal into a linear CCD detector for converting the optical signal into an electrical signal which is then input to a computer control system and collected by a built-in capture card; and the computer is configured to perform a three-dimensional reconstruction of an image and perform two-dimensional cross-section image analysis; and the computer control system is connected to the scanning galvanometer to control a vibration of the scanning galvanometer. The device of the present application can be used for performing PS-OCT imaging detection of the dental hard tissue surface in the oral cavity of a subject. The computer control system automatically performs two-dimensional cross-section imaging and three-dimensional reconstruction imaging of the image, thereby completing a three-dimensional quantitative evaluation. The present application provides a new method for clinically detecting early demineralization of dental hard tissue with high resolution.
机译:公开了一种基于PS-OCT的视觉成像装置,用于早期脱模和牙科硬组织的龋齿,包括用于发射激光的激光光源,用于接收和将激光光源发射的激光划分为参考的耦合器激光和检测激光;其中,耦合到耦合器的参考激光回溯和检测激光回到耦合器的检测激光光被耦合,然后通过传输光栅和凸透镜以将光信号输入到线性CCD检测器中,以将光信号转换为电气然后将信号输入到计算机控制系统并由内置捕获卡收集;并且计算机被配置为执行图像的三维重建并执行二维截面图像分析;并且计算机控制系统连接到扫描电流计以控制扫描电流计的振动。本申请的装置可用于执行受试者口腔中的牙齿硬组织表面的PS-OCT成像检测。计算机控制系统自动执行图像的二维横截面成像和三维重建成像,从而完成三维定量评估。本申请提供了一种以高分辨率临床检测牙科硬组织早期脱矿质的新方法。

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