首页> 外文会议>Lasers in Dentistry XII; Progress in Biomedical Optics and Imaging; vol.7 no.23 >Carious growth monitoring with optical coherence tomography
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Carious growth monitoring with optical coherence tomography

机译:光学相干断层扫描监测龋齿生长

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Optical Coherence Tomography was used to monitor subsurface caries evolution process in vitro. Human tooth was used and bacteria were employed to induce caries lesions. Twenty-five human third molars, were used in this study. The teeth were cut longitudinally at mesio-distal direction; the surfaces were coated with nail varnish except for two squared windows (2x4 mm); at the cement-enamel junction. Artificial lesions were induced by a S. Mutans microbiological culture. The samples (N = 50) were divided into groups according to the demineralization time: 3, 5, 7, 9 and 11 days. The culture medium, was changed each 48 hours. After the demineralization process the samples were rinsed with double-deionized water and stored in a humid environment. The OCT system was implemented with average power of 96 μW in the sample arm, providing a 23 μm of axial resolution. The images were produced with lateral scans step of 10 μm. The detection system was composed by a detector, a demodulator and a computer. With the images generated by OCT it was possible to determine the lesion depth as function of sample exposition time to microbiological culture. We observed that the depth of the lesion in the root dentine increased from 70 μm to 230 μm, depending of exposure time, and follows the bacterial population growth law. This OCT system accurately depicts hard dental tissue and it was able to detect early caries in its structure, providing a powerful contactless high resolution image of lesions.
机译:光学相干断层扫描被用来监测体外地下龋的演变过程。使用人牙,并使用细菌诱发龋齿损伤。在这项研究中使用了二十五个人类第三磨牙。在近中方向纵向切割牙齿;除两个方形窗口(2x4 mm)外,表面均涂有指甲油;在水泥-搪瓷连接处。人工损伤由变形链球菌微生物培养物诱导。样品(N = 50)根据脱矿质时间分为3、5、7、9和11天。每48小时更换一次培养基。脱盐过程后,样品用双去离子水冲洗并保存在潮湿的环境中。 OCT系统的采样臂平均功率为96μW,轴向分辨率为23μm。图像的横向扫描步长为10μm。该检测系统由检测器,解调器和计算机组成。利用OCT生成的图像,可以确定病灶深度与样品暴露于微生物培养的时间的函数。我们观察到根部牙本质中的病变深度从70μm增加到230μm,具体取决于暴露时间,并且遵循细菌种群生长规律。该OCT系统准确地描绘了坚硬的牙齿组织,并且能够检测其结构中的早期龋齿,从而提供了强大的非接触高分辨率病变图像。

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