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首页> 外文期刊>Photomedicine and laser surgery >Influence of pulse repetition rate on temperature rise and working time during composite filling removal with the Er:YAG laser.
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Influence of pulse repetition rate on temperature rise and working time during composite filling removal with the Er:YAG laser.

机译:Er:YAG激光去除复合填充物时脉冲重复频率对温度升高和工作时间的影响。

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摘要

OBJECTIVE: The purpose of this study was to assess the efficacy of Er:YAG laser energy for composite resin removal and the influence of pulse repetition rate on the thermal alterations occurring during laser ablation. MATERIALS AND METHODS: Composite resin filling was placed in cavities (1.0 mm deep) prepared in bovine teeth and the specimens were randomly assigned to five groups according to the technique used for composite filling removal. In group I (controls), the restorations were removed using a high-speed diamond bur. In the other groups, the composite fillings were removed using an Er:YAG laser with different pulse repetition rates: group 2-2 Hz; group 3-4 Hz; group 4-6 Hz; and group 5-10 Hz. The time required for complete removal of the restorative material and the temperature changes were recorded. RESULTS: Temperature rise during composite resin removal with the Er:YAG laser occurred in the substrate underneath the restoration and was directly proportional to the increase in pulse repetitionrate. None of the groups had a temperature increase during composite filling removal of more than 5.6 degrees C, which is considered the critical point above which irreversible thermal damage to the pulp may result. Regarding the time for composite filling removal, all the laser-ablated groups (except for group 5 [10 Hz]) required more time than the control group for complete elimination of the material from the cavity walls. CONCLUSION: Under the tested conditions, Er:YAG laser irradiation was efficient for composite resin ablation and did not cause a temperature increase above the limit considered safe for the pulp. Among the tested pulse repetition rates, 6 Hz produced minimal temperature change compared to the control group (high-speed bur), and allowed composite filling removal within a time period that is acceptable for clinical conditions.
机译:目的:本研究的目的是评估Er:YAG激光能量去除复合树脂的功效以及脉冲重复频率对激光烧蚀过程中发生的热变化的影响。材料与方法:将复合树脂填充物放入牛齿中制备的腔体(深1.0毫米)中,并根据去除复合物填充的技术将样品随机分为五组。在第一组(对照组)中,使用高速金刚石钻针去除修复体。在其他组中,使用具有不同脉冲重复频率的Er:YAG激光去除复合填充物:组2-2 Hz; 3-4 Hz组; 4-6 Hz组;和5-10 Hz组。记录完全去除修复材料所需的时间和温度变化。结果:在Er:YAG激光去除复合树脂期间,温度升高发生在修复体下方的基板中,并且与脉冲重复频率的增加成正比。在去除填充物的过程中,没有一个组的温度升高超过5.6摄氏度,这被认为是一个临界点,在该临界点以上可能导致纸浆不可逆的热损伤。关于去除复合填充物的时间,所有激光消融组(第5组[10 Hz]除外)比对照组需要更多的时间才能从腔壁完全清除材料。结论:在测试条件下,Er:YAG激光辐照对于复合树脂的烧蚀是有效的,并且不会导致温度升高超过对纸浆安全的极限。在测试的脉冲重复频率中,与对照组(高速bur)相比,6 Hz产生的温度变化最小,并允许在临床条件可接受的时间内去除复合填充物。

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