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Real-time near-IR imaging of laser-ablation crater evolution in dental enamel

机译:牙科搪瓷中激光消融火山口进化的实时近IR成像

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We have shown that the enamel of the tooth is almost completely transparent near 1310-nm in the near-infrared and that near-IR (NIR) imaging has considerable potential for the optical discrimination of sound and demineralized tissue and for observing defects in the interior of the tooth. Lasers are now routinely used for many applications in dentistry including the ablation of dental caries. The objective of this study was to test the hypothesis that real-time NIR imaging can be used to monitor laser-ablation under varying conditions to assess peripheral thermal and transient-stress induced damage and to measure the rate and efficiency of ablation. Moreover, NIR imaging may have considerable potential for monitoring the removal of demineralized areas of the tooth during cavity preparations. Sound human tooth sections of approximately 3-mm thickness were irradiated by a CO_2 laser under varying conditions with and without a water spray. The incision area in the interior of each sample was imaged using a tungsten-halogen lamp with band-pass filter centered at 1310-nm combined with an InGaAs focal plane array with a NIR zoom microscope in transillumination. Due to the high transparency of enamel at 1310-nm, laser-incisions were clearly visible to the dentin-enamel junction and crack formation, dehydration and irreversible thermal changes were observed during ablation. This study showed that there is great potential for near-IR imaging to monitor laser-ablation events in real-time to: assess safe laser operating parameters by imaging thermal and stress-induced damage, elaborate the mechanisms involved in ablation such as dehydration, and monitor the removal of demineralized enamel.
机译:我们已经表明,牙齿的牙釉质在近红外线的1310-nm附近几乎完全透明,并且近红外(NIR)成像具有相当大的声音辨别和脱矿质组织的光学辨别以及观察内部缺陷的潜力牙齿。现在,激光器通常用于牙科的许多应用,包括消融龋齿。本研究的目的是测试实时NIR成像可用于监测不同条件下的激光消融以评估外周热和瞬态应力诱导的损坏并测量消融速率和效率。此外,NIR成像可能具有相当大的可能性,用于监测腔制剂期间牙齿的去除牙齿的去除。在不同的条件下,通过水喷雾,通过CO_2激光照射大约3mm厚度的声音人齿截面。每个样品内部的切口区域使用钨 - 卤素灯成像,其中带通滤光器以1310-nm为中心,结合InGaAs焦平面阵列,其中泛变焦显微镜。由于牙釉质的透明度高1310-nm,在牙本质 - 搪瓷结清楚地看到激光切口,在消融期间观察到裂缝形成,脱水和不可逆的热变化。这项研究表明,近红外成像具有很大的潜力,可以实时监测激光烧蚀事件:通过成像热和应力诱导的损伤来评估安全的激光器操作参数,详细阐述了消融诸如脱水的消融机制,以及监测脱矿质珐琅质的去除。

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