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Selective Ablation of Carious Lesions using an Integrated Near-IR Imaging System and a Novel 9.3-µm CO2 Laser

机译:使用集成的近红外成像系统和新型9.3 µm CO2激光选择性切除龋齿

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摘要

Previous studies have shown that reflectance imaging at wavelengths greater than 1200-nm can be used to image demineralization on tooth occlusal surfaces with high contrast and without the interference of stains. In addition, these near-IR imaging systems can be integrated with laser ablation systems for the selective removal of carious lesions. Higher wavelengths, such as 1950-nm, yield higher lesion contrast due to higher water absorption and lower scattering. In this study, a point-to-point scanning system employing diode and fiber lasers operating at 1450, 1860, 1880, and 1950-nm was used to acquire reflected light images of the tooth surface. Artificial lesions were imaged at these wavelengths to determine the highest lesion contrast. Near-IR images at 1880-nm were used to demarcate lesion areas for subsequent selective carious lesion removal using a new compact air-cooled CO2 laser prototype operating at 9.3-µm. The highest lesion contrast was at 1950-nm and the dual NIR/CO2 laser system selectively removed the simulated lesions with a mean loss of only 12-µm of sound enamel.
机译:先前的研究表明,波长大于1200-nm的反射成像可用于在牙齿咬合面上以高对比度成像并且没有污渍的情况下的脱矿物质成像。此外,这些近红外成像系统可以与激光消融系统集成在一起,以选择性去除龋损。由于较高的吸水率和较低的散射,较高的波长(例如1950 nm)可产生较高的病变对比度。在这项研究中,采用了点对点扫描系统,该系统采用工作在1450、1860、1880和1950 nm的二极管和光纤激光器来获取牙齿表面的反射光图像。在这些波长下对人造病变成像,以确定最高的病变对比度。使用工作在9.3 µm的新型紧凑型空冷CO2激光原型,使用1880 nm处的近红外图像划定病变区域,以便随后进行选择性龋齿去除。最高的病变对比是在1950-nm处,并且双NIR / CO2激光系统选择性地去除了模拟的病变,平均仅损失了12 µm的搪瓷。

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