Dostalova Tatjana, Jelinkova Helena, Housova Devana, Sulc Jan, Nemec Michal, Miyagi Mitsunobu, Brugnera Junior Aldo, Zanin Fatima
Charles University, 1st Medical Faculty, Department of Prosthodontics, GFH, Prague, Czech Republic.
Braz Dent J. 2004;15 Spec No:SI3-8.
This study describes a preclinical investigation with laser-activated bleaching agent for discolored teeth. Bleaching techniques involve a broad-spectrum approach utilizing hydrogen peroxide (3-38%) with or without heat or laser, carbamide peroxide (10-30%), or a mixture of sodium perborate and hydrogen peroxide. Extracted human maxillary central incisors were selected. In the bleaching experiment, 38% hydrogen peroxide was used. Two different laser systems and light emission diodes for activation of the bleaching agent were used: diode laser, wavelength 970 nm, and infra-red diode laser, wavelength 790 nm, with eight blue light emission diodes, wavelength 467 nm. The enamel surface was evaluated with the scanning electron microscope. The method of chemical oxidation resulted in a 2-3 shade change in one treatment (15 min). Shorter time (5 min) was not effective. The diode laser, wavelength 970 nm, and the bleaching agent produced the same effect but with a shorter time of bleaching process (5 min - 1 W, 2.5 min - 2 W). Infra-red diode laser, wavelength 790 nm with eight blue light emission diodes, wavelength 467 nm, and the bleaching agent reached the desired color shade also after a shorter time (5 min - 40 mW). Slight surface modification after the bleaching process was detected with scanning electron microscopy. Currently, the laser has been proven the most valuable energy source for power bleaching with simple and short application in the dental office.
本研究描述了一项针对变色牙齿的激光激活漂白剂的临床前调查。漂白技术涉及一种广谱方法,使用过氧化氢(3%-38%),有或没有加热或激光、过氧化脲(10%-30%),或过硼酸钠与过氧化氢的混合物。选取了拔除的人类上颌中切牙。在漂白实验中,使用了38%的过氧化氢。使用了两种不同的激光系统和用于激活漂白剂的发光二极管:波长970nm的二极管激光和波长790nm的红外二极管激光,以及八个波长467nm的蓝光发光二极管。用扫描电子显微镜评估牙釉质表面。化学氧化方法在一次治疗(15分钟)中导致牙齿颜色改变2-3个色阶。较短时间(5分钟)无效。波长970nm的二极管激光和漂白剂产生了相同的效果,但漂白过程时间更短(5分钟-1W,2.5分钟-2W)。波长790nm的红外二极管激光与八个波长467nm的蓝光发光二极管以及漂白剂在较短时间(5分钟-40mW)后也达到了所需的颜色色阶。漂白过程后通过扫描电子显微镜检测到轻微的表面改性。目前,激光已被证明是牙科诊所中用于强力漂白的最有价值的能量来源,其应用简单且时间短。