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Heat generation caused by ablation of restorative materials with an ultrashort pulse laser (USPL) system

机译:超短脉冲激光(USPL)系统烧蚀修复性材料引起的热量产生

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摘要

Heat generation during the removal of dental restorative materials may lead to a temperature increase and cause painful sensations or damage dental tissues. The aim of this study was to assess heat generation in dental restoration materials following laser ablation using an ultrashort pulse laser (USPL) system. A total of 225 specimens of phosphate cement (PC), ceramic (CE), and composite (C) were used, evaluating a thickness of 1 to 5 mm each. Ablation was performed with an Nd:YVO4 laser at 1,064 nm, a pulse length of 8 ps, and a repetition rate of 500 kHz with a power of 6 W. Employing a scanner system, rectangular cavities of 1.5-mm edge length were generated. A temperature sensor was placed at the back of the specimens to record the temperature during the ablation process. All measurements were made employing a heat-conductive paste without any additional cooling or spray. Heat generation during laser ablation depended on the thickness of the restoration material (p 0.05) with the highest values in the composite group (p 0.05), showing an increase of up to 17 K. A time delay for temperature increase during the ablation process depending on the material thickness was observed in the PC and C group (p 0.05) with highest values for cement (p 0.05). Employing the USPL system for removal of restorative materials, heat generation has to be considered. Especially during laser ablation next to pulpal tissues, painful sensations might occur.
机译:去除牙齿修复材料时产生的热量可能导致温度升高并引起疼痛感或损坏牙齿组织。这项研究的目的是评估使用超短脉冲激光(USPL)系统进行激光消融后牙科修复材料中的热量产生。总共使用了225个磷酸盐水泥(PC),陶瓷(CE)和复合材料(C)的样本,每个样本的厚度为1-5毫米。用1,064 nm的Nd:YVO4 激光,功率为6 W的脉冲长度为8 ps,重复频率为500 kHz进行消融。采用扫描仪系统,边缘为1.5 mm的矩形腔长度产生。将温度传感器放置在样品的背面,以记录烧蚀过程中的温度。所有测量均使用导热膏进行,无需任何额外的冷却或喷雾。激光烧蚀过程中产生的热量取决于修复材料的厚度(p <0.05),复合材料组中的最大值(p <0.05),最高可增加17K。烧蚀过程中温度升高的时间延迟在PC和C组中观察到取决于材料厚度的过程(p <0.05),水泥的最高值(p <0.05)。使用USPL系统去除修复性材料时,必须考虑产生热量。特别是在激光烧蚀牙髓组织附近时,可能会出现疼痛感。

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  • 来源
    《Lasers in Medical Science》 |2012年第2期|p.297-303|共7页
  • 作者单位

    Department of Operative and Preventive Dentistry, University of Bonn, Welschnonnenstrasse. 17, 53111, Bonn, Germany;

    Department of Operative and Preventive Dentistry, University of Bonn, Welschnonnenstrasse. 17, 53111, Bonn, Germany;

    Department of Operative and Preventive Dentistry, University of Bonn, Welschnonnenstrasse. 17, 53111, Bonn, Germany;

    Department of Operative and Preventive Dentistry, University of Bonn, Welschnonnenstrasse. 17, 53111, Bonn, Germany;

    Department of Operative and Preventive Dentistry, University of Bonn, Welschnonnenstrasse. 17, 53111, Bonn, Germany;

    Department of Operative and Preventive Dentistry, University of Bonn, Welschnonnenstrasse. 17, 53111, Bonn, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Heat generation; Ultrashort pulse laser system; Phosphate cement; Composite; Ceramic; Temperature measurement;

    机译:发热;超短脉冲激光系统;磷酸盐水泥;复合材料;陶瓷;温度测量;

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