首页> 外文会议>Conference on Lasers in Dentistry X; 20040125; San Jose,CA; US >Heat generated by Er:YAG laser in the pulp chamber of teeth submitted to removal of dental tissue and composite resin
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Heat generated by Er:YAG laser in the pulp chamber of teeth submitted to removal of dental tissue and composite resin

机译:Er:YAG激光在牙齿的牙髓腔中产生的热量可去除牙齿组织和复合树脂

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The knowledge about and control of thermal energy produced by Er: YAG laser after irradiating hard dental tissues and compound resin is important because the pulp, like all vital biological tissue, has a certain capacity for supporting stimulus. The objective of this study was to analyze the thermal variation generated by Er: YAG laser (λ= 2.94μm) during the preparation of a Class I cavity in the dental structure and in the removal of microhybrid Z100~(~R) (3M) compound resin. An evaluation was made of 30 maxillary human pre-molar teeth from the bank of the Endodontic Laboratory Center of Ribeirao Preto Dental School, Brasil. The sample was divided into 6 groups of 5 teeth each: Group 1, preparation of Class I cavity with ErYAG laser (350mJ, 3Hz, 343 impulses, 120J, 113 seconds); Group 2, preparation of Class I cavity with ErYAG laser (350mJ, 4Hz, 343 impulses, 120J, 81 seconds); Group 3, preparation of Class I cavity with ErYAG laser (350mJ, 6Hz, 343 impulses, 120J, 58 seconds); Group 4, removal of compound resin from Class I preparation with ErYAG laser (350mJ, 3Hz, 258 impulses, 90J, 85 seconds); Group 5, removal of compound resin from Class I preparation with ErYAG laser (350mJ, 4Hz, 258 impulses, 90J, 67 seconds); Group 6, removal of compound resin from Class I preparation with ErYAG laser (350mJ, 6Hz, 258 impulses, 90J, 42 seconds). The laser used was KaVo Key 2 (Biberach, Germany), λ = 2,94μm, P = 3 Watts, pulse duration of 250μs, with air-water cooling. The increase in temperature during dental preparation and the removal of the compound resin was evaluated by means of a Tektronix DMM916 Thermocouple (Consitec, Brasil). The results showed that the application of laser for the removal of the hard dental tissues and for the removal of compound resins with the pulse frequencies 3, 4 and 6Hz did not generate heating greater than 3.1℃ and remained within the histopathological limits permitted for pulp tissue (5.5℃) and there was a significant statistical difference between the heat generated by the application of laser in the removal of the hard dental tissues and in the removal of compound resins (p < 0.01). The average increase in temperature of the compound resin component was greater than the tooth.
机译:对Er:YAG激光照射坚硬的牙齿组织和复合树脂后产生的热能的知识和控制很重要,因为与所有重要的生物组织一样,牙髓具有一定的刺激能力。这项研究的目的是分析在制备牙齿结构中的I类腔以及去除微杂种Z100〜(〜R)(3M)时Er:YAG激光(λ=2.94μm)产生的热变化复合树脂。对巴西Ribeirao Preto牙科学校的牙髓实验室中心的30颗上颌人类前磨牙进行了评估。将样品分为6组,每组5个牙齿:第1组,用ErYAG激光(350mJ,3Hz,343脉冲,120J,113秒)制备I类腔;第2组,用ErYAG激光(350mJ,4Hz,343脉冲,120J,81秒)制备I类腔;第3组,用ErYAG激光(350mJ,6Hz,343脉冲,120J,58秒)制备I类腔;第4组,使用ErYAG激光(350mJ,3Hz,258脉冲,90J,85秒)从I类制剂中去除复合树脂;第5组,使用ErYAG激光(350mJ,4Hz,258脉冲,90J,67秒)从I类制剂中去除复合树脂;第6组,使用ErYAG激光(350mJ,6Hz,258脉冲,90J,42秒)从I类制剂中去除复合树脂。所使用的激光器是KaVo Key 2(德国比伯拉赫),λ=2,94μm,P = 3瓦,脉冲持续时间为250μs,并有空气-水冷却。通过Tektronix DMM916热电偶(Consitec,巴西)评估在牙科准备过程中温度的升高和复合树脂的去除。结果表明,使用激光去除硬牙组织和脉冲频率分别为3、4和6Hz的复合树脂不会产生超过3.1℃的热量,并且仍在牙髓组织允许的组织病理学范围内(5.5℃),并且在去除坚硬的牙齿组织和去除复合树脂方面,使用激光产生的热量之间存在显着的统计学差异(p <0.01)。复合树脂组分的平均温度升高大于牙齿。

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