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Selective Removal of Dental Composite using a Rapidly Scanned Carbon Dioxide Laser

机译:使用快速扫描二氧化碳激光选择性去除牙科复合材料

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Dental restorative materials are color matched to the tooth and are difficult to remove by mechanical means without excessive removal or damage to peripheral enamel and dentin. Lasers are ideally suited for selective ablation to minimize healthy tissue loss when replacing existing restorations, sealants or removing composite adhesives such as residual composite left after debonding orthodontic brackets. In this study a carbon dioxide laser operating at high laser pulse repetition rates integrated with a galvanometer based scanner was used to selectively remove composite from tooth surfaces. A diode array spectrometer was used to measure the plume emission after each laser pulse and determine if the ablated material was tooth mineral or composite. The composite was placed on tooth buccal and occlusal surfaces and the carbon dioxide laser was scanned across the surface to selectively remove the composite without excessive damage to the underlying sound enamel. The residual composite and the damage to the underlying enamel was evaluated using optical microscopy. The laser was able to rapidly remove the composites rapidly from both surfaces with minimal damage to the underlying sound enamel.
机译:牙齿修复材料的颜色与牙齿相匹配,并且很难通过机械手段去除,而不会过度去除或损坏周围的牙釉质和牙本质。激光非常适合选择性切除,以在替换现有的修复体,密封剂或去除复合粘合剂(例如在将正畸支架脱粘后残留的复合材料)时最大程度地减少健康组织损失。在这项研究中,以高激光脉冲重复频率运行的二氧化碳激光器与基于检流计的扫描仪集成在一起,用于从牙齿表面选择性去除复合物。二极管阵列光谱仪用于测量每个激光脉冲后的烟羽发射,并确定烧蚀的材料是牙齿矿物还是复合材料。将该复合物放置在牙颊和咬合表面上,并在整个表面上扫描二氧化碳激光,以选择性地去除该复合物,而不会对下面的声音牙釉质造成过度损害。使用光学显微镜评估残留的复合材料和对下面釉质的损害。激光能够快速地从两个表面上快速去除复合材料,而对下方的声音瓷釉的损害却最小。

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