He Huixia, Yu Jinhua, Song Yuanxiong, Lu Shouchang, Liu Hongchen, Liu Luchuan
Department of Stomatology, Chinese PLA General Hospital and Postgraduate Military Medical School, Beijing, China.
Photomed Laser Surg. 2009 Apr;27(2):235-40. doi: 10.1089/pho.2008.2244.
To investigate the sequential thermal and morphological effects of the pulsed Nd:YAG laser on root canal surfaces.
Effectiveness and safety are two critical aspects of laser application for root canal instrumentation. To date, few studies have synchronously focused on the efficacy of root canal cleanliness and thermal changes in root surfaces irradiated by the Nd:YAG laser.
Single-root human premolars (n = 144) were sectioned at the cementoenamel junction. The root canals were instrumented and divided into three groups: group 1 (15 Hz), group 2 (20 Hz), and group 3 (15 Hz with black ink). Each group was divided into eight subgroups according to the laser power settings used. The temperature elevations of the apical and coronal root surfaces were measured with a thermocouple measurement system during laser irradiation. Then the roots were bisected longitudinally and examined with the scanning electron microscope.
There was a positive correlation between laser energy level and temperature elevation of the root surfaces of all three groups. The temperature elevation in group 3 was the highest, while that in group 1 was the lowest at all power settings. More strikingly, with increasing laser power and frequency, there were corresponding morphological changes seen in the root canal wall, such as removal of the smear layer and melting and recrystallization of the dentin. At 2.0 W, the temperature elevations seen in all three groups were within the biologically tolerable thermal limit, but efficient removal of the smear layer was achieved only in groups 2 and 3. Additionally, the thermal and morphological changes seen at the apical third of the root were greater than those seen at the coronal third.
This study provides useful information on the choice of appropriate energy parameters to use during application of pulsed Nd:YAG energy for root canal therapy.
研究脉冲Nd:YAG激光对根管表面的顺序热效应和形态学效应。
有效性和安全性是激光应用于根管治疗的两个关键方面。迄今为止,很少有研究同时关注Nd:YAG激光照射根管时根管清洁效果和牙根表面热变化。
将144颗单根人前磨牙在牙骨质釉质界处截断。对根管进行预备并分为三组:第1组(15Hz)、第2组(20Hz)和第3组(15Hz并使用黑色墨水)。根据所用的激光功率设置,每组再分为八个亚组。在激光照射期间,用热电偶测量系统测量根尖和冠方牙根表面的温度升高。然后将牙根纵向平分,并用扫描电子显微镜检查。
三组牙根表面的激光能量水平与温度升高呈正相关。在所有功率设置下,第3组的温度升高最高,而第1组的温度升高最低。更显著的是,随着激光功率和频率的增加,根管壁出现相应的形态学变化,如玷污层的去除以及牙本质的熔化和再结晶。在2.0W时,三组观察到的温度升高均在生物可耐受的热极限范围内,但仅第2组和第3组实现了玷污层的有效去除。此外,牙根根尖三分之一处观察到的热效应和形态学变化大于冠方三分之一处。
本研究为脉冲Nd:YAG激光用于根管治疗时选择合适的能量参数提供了有用信息。