Valério R A, da Cunha V S, Galo R, de Lima F A, Bachmann L, Corona S A M, Borsatto M C
Clinical Pediatric Dentistry Department, Ribeirão Preto School of Dentistry, São Paulo University, Café Avenue, Monte Alegre, 14040-904 Ribeirão Preto, SP, Brazil.
Physics Department, School of Philosophy, Science and Literature, São Paulo University, 3900 Bandeirantes Avenue, 14040-901 Ribeirão Preto, SP, Brazil.
ScientificWorldJournal. 2015;2015:396962. doi: 10.1155/2015/396962. Epub 2015 Mar 22.
The aim of this study is to evaluate the temperature change on specimens of primary enamel irradiated with different pulse duration of Nd:YAG laser. Fifteen sound primary molars were sectioned mesiodistally, resulting in 30 specimens (3.5 × 3.5 × 2.0 mm). Two small holes were made on the dentin surface in which K-type thermocouples were installed to evaluate thermal changes. Specimens were randomly assigned in 3 groups (n = 10): A = EL (extra long pulse, 10.000 μs), B = LP (long pulse, 700 μs), and C = SP (short pulse, 350 μs). Nd:YAG laser (λ = 1.064 μm) was applied at contact mode (10 Hz, 0.8 W, 80 mJ) and energy density of 0.637 mJ/mm(2). Analysis of variance (ANOVA) was performed for the statistical analysis (P = 0.46). Nd:YAG laser pulse duration provided no difference on the temperature changes on primary enamel, in which the following means were observed: A = EL (23.15°C ± 7.75), B = LP (27.33°C ± 11.32), and C = SP (26.91°C ± 12.85). It can be concluded that the duration of the laser pulse Nd:YAG increased the temperature of the primary enamel but was not influenced by different pulse durations used in the irradiation.
本研究的目的是评估用不同脉冲持续时间的Nd:YAG激光照射乳牙釉质标本时的温度变化。将15颗完好的乳牙沿近远中方向切开,得到30个标本(3.5×3.5×2.0毫米)。在牙本质表面制作两个小孔,安装K型热电偶以评估热变化。标本随机分为3组(n = 10):A = EL(超长脉冲,10000微秒),B = LP(长脉冲,700微秒),C = SP(短脉冲,350微秒)。Nd:YAG激光(λ = 1.064微米)以接触模式(10赫兹,0.8瓦,80毫焦)和0.637毫焦/平方毫米的能量密度进行照射。采用方差分析(ANOVA)进行统计分析(P = 0.46)。Nd:YAG激光脉冲持续时间对乳牙釉质的温度变化没有差异,观察到的以下平均值为:A = EL(23.15°C±7.75),B = LP(27.33°C±11.32),C = SP(26.91°C±12.85)。可以得出结论,Nd:YAG激光脉冲的持续时间会使乳牙釉质温度升高,但不受照射中使用的不同脉冲持续时间的影响。