首页> 外文期刊>Journal of Lasers in Medical Sciences >An Invitro Study on The Temperature Changes of Dentin, Irradiated by CO2 and Er: Cr;YSGG Laser
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An Invitro Study on The Temperature Changes of Dentin, Irradiated by CO2 and Er: Cr;YSGG Laser

机译:CO2和Er:Cr; YSGG激光辐照牙本质温度变化的体外研究

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INTRODUCTION:? The aim of this in-vitro study was the evaluation of mperature changes due to irradiation of two different lasers used for the reduction of dentinal hypersensitivity and their effect on the pulp damage. The study was done for two dentin thicknesses.? METHODS:? Twenty intact extracted third molars were prepared by longitudinal ground sectioning for 1 and 2 mm dentin thicknesses while a thermocouple was positioned at the inner surface of the dentin disk. Thermal evaluation was assessed by a KJT digital thermometer. During the test, the data produced by the thermometer was transferred and logged into a PC via RS232 serial port. CO2 laser (Ultra pulse,50W, 100?sec, Spot size: 0.5 mm) and Er,Cr;YSGG laser (Free-running pulse mode,0.25W, 140?sec, 12.50 milli-joules) irradiations were randomly performed upon the dentin surfaces. The collected data was analyzed by two-way ANOVA test. RESULTS:? The mean temperature rise in 1mm dentinal thickness was 8.57°C which was significantly higher than 3.63°C in 2mm dentin thickness (P&0.001) and higher than the threshold temperature for pulp damage; however, no significant difference was noted between the two lasers (P=0.355). After removing the CO2 laser, the temperature decreased to the initial level faster than the time needed for Er,Cr;YSGG laser (44.47°Cversus 62.82°C)(P&0.001). In other words, in both lasers the temperature decrease in 2mm dentinal disc was faster than 1mm dentinal disc. CONCLUSION : ? ?The temperature rise due to both lasers for 1mm of dentinal thickness was in excess of safe limit for the tissue and it would probably result in pulpal damage.In the case of 2mm dentinal thickness, the temperature rise was not higher than the safe limit and it would not damage the pulp in clinical conditions.
机译:介绍:?这项体外研究的目的是评估由于照射两种不同激光所致的牙本质变化,这些激光用于降低牙本质过敏性及其对牙髓损伤的影响。该研究是针对两种牙本质厚度进行的。方法:?在牙本质牙盘的内表面放置热电偶的同时,通过纵向研磨将厚度为1和2毫米的牙本质切成20颗完整的第三磨牙。通过KJT数字温度计评估热评估。在测试过程中,温度计产生的数据被传输并通过RS232串行端口登录到PC中。随后随机照射CO2激光(超脉冲,50W,100μsec,光斑尺寸:0.5mm)和Er,Cr; YSGG激光(自由运行脉冲模式,0.25W,140μsec,12.50毫焦耳)照射。牙本质表面。收集的数据通过双向方差分析进行分析。结果:? 1mm牙本质厚度的平均温度升高为8.57°C,明显高于2mm牙本质厚度的3.63°C(P <0.001),并且高于牙髓损伤的阈值温度;但是,在两个激光器之间没有发现显着差异(P = 0.355)。移出CO2激光器后,温度下降到初始温度的速度比Er,Cr; YSGG激光器所需的时间更快(44.47°C对62.82°C)(P <0.001)。换句话说,在两个激光器中,2mm牙本质盘的温度下降都快于1mm牙本质盘。结论:?两种激光对牙本质厚度1mm造成的温升超过组织的安全极限,可能会导致牙髓损伤。在2mm牙本质厚度的情况下,温升不高于安全极限,并且在临床条件下不会损坏纸浆。

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