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Thermographical and morphological studies of Er,Cr:YSGG laser irradiation on root canal walls.

机译:Er,Cr:YSGG激光照射根管壁的热像学和形态学研究。

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OBJECTIVE: This study was performed to investigate the temperature rises on root surfaces and morphological changes on root canal walls of extracted human teeth after irradiation by erbium, chromium: yttrium, scandium, gallium, garnet (Er, Cr:YSGG) laser and to evaluate the efficiency in removing smear layer and debris from the prepared root canal walls in vitro. Background Data: No report on Er, Cr:YSGG laser effects under various conditions and specific tips for endodontic treatments has been reported. METHODS: Sixty extracted human teeth with single and straight root were used in this study. The teeth were prepared at 1 mm short of the apical foramen by a conventional technique using K-files. Fifty-four specimens were irradiated by Er, Cr:YSGG laser at the output powers of 2 W, 3 W, and 5 W for 7 sec with three fiber tips (200, 320, and 400 microm diameters). Temperature changes were recorded thermographically. All teeth were examined by light microscopy or scanning electron microscopy (SEM). RESULTS: Thermographic study showed that the average temperature rises on root surfaces were less than 8 degrees C. Observation by light microscopy revealed the ablation at the apical stop, and that by SEM indicated that laser irradiation at 5 W using a fiber tip with 400 microm diameter was efficient for removing smear layer and debris without carbonization or melting. CONCLUSIONS: The results of this study suggested that the temperature rises during Er, Cr:YSGG laser irradiation at the parameters used in this study are minimal to cause the damage on periodontal and bone tissues. Moreover, it was suggested that it is efficient to remove smear layer and debris without causing any carbonization and melting.
机译:目的:研究study,铬:钇、,、镓,石榴石(Er,Cr:YSGG)激光照射后,拔牙后牙根表面的温度升高和根管壁形态变化。体外清除制备的根管壁上的污迹层和碎片的效率。背景资料:尚无关于在各种条件下进行Er,Cr:YSGG激光作用的报道,也没有关于牙髓治疗的具体技巧的报道。方法:本研究使用六十颗单根和直根拔牙人牙。通过使用K锉的常规技术,在距根尖孔1mm处制备牙齿。用3个光纤尖端(直径分别为200、320和400微米),以2 W,3 W和5 W的输出功率,用Er,Cr:YSGG激光辐照54个样本,持续7秒钟。通过热成像记录温度变化。通过光学显微镜或扫描电子显微镜(SEM)检查所有牙齿。结果:热像仪研究表明,根表面的平均温度升高低于8摄氏度。光学显微镜观察显示,根尖处有消融,而SEM表明,使用400微米的光纤尖端以5 W进行激光照射直径有效去除污点层和碎屑而不会碳化或熔化。结论:本研究结果表明,在本研究中使用的参数下,Er,Cr:YSGG激光辐照过程中的温度升高最小,不会对牙周和骨骼组织造成损害。此外,提出了在不引起任何碳化和熔化的情况下去除污迹层和碎屑的有效方法。

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