Guidotti Rebecca, Merigo Elisabetta, Fornaini Carlo, Rocca Jean-Paul, Medioni Etienne, Vescovi Paolo
Oral Medicine, Oral Pathology and Laser-Assisted Surgery Unit, Odontostomatology Section, Department of Biomedical, Biotechnological and Translational Sciences (S.Bi.Bi.T.) - European Master Degree on Oral Laser Applications, University of Parma and Parma Hospital, via Gramsci 14, 43126, Parma, Italy,
Lasers Med Sci. 2014 Jan;29(1):69-75. doi: 10.1007/s10103-012-1217-x. Epub 2012 Dec 5.
Cleaning and disinfection of the root canal system are some of the most important goals in endodontic therapy. The aim of this preliminary study is to assess the effectiveness of Er:YAG laser fiber in removing the smear layer produced during root canal walls instrumentation. Forty-eight single-rooted teeth were prepared with manual and rotary Ni-Ti instruments, in addition to 2.5% NaOCl irrigation. Samples were randomly subdivided into groups and treated with: three irradiations of 5 s each, with 300-μm Er:YAG endodontic fiber, 1 W and 2.5% NaOCl solution (A Group); two laser irradiations with 17% EDTA solution and 2.5% NaOCl solution (B Group); laser irradiation plus 17% EDTA solution and 2.5% NaOCl (C Group); only in the final wash of 17% EDTA (control group D). During laser treatment, temperature variations were analyzed by using thermocouple and thermal camera devices in order to test both deep and superficial temperatures. Each sample was finally observed by scanning electron microscope (SEM) at the coronal, medium, and apical thirds at ×500 magnification and blindly scored depending on the amount of smear layer. Statistical analysis of the results was conducted using the Kruskal-Wallis and Mann-Whitney test to determine the eventual significant differences between the quantity of smear layer in each group and between the groups at coronal, medium, and apical third: a p value <0.05 was considered significant. The thermal analysis realized by thermocouple with the used parameters demonstrated that laser endodontic fiber produces an average deep temperature increase of 3.5 ± 0.4 °C; analysis performed with a thermal camera showed an average superficial temperature increase of 1.3 ± 0.2 °C produced by laser endodontic fiber use. Deep and superficial temperatures fall immediately after irradiation possibly without causing structural damage or anatomical alteration inside the root canal and neither on periodontal tissues. SEM analysis showed that specimens of group B had the highest level of cleaning in every third, with a significant difference with groups D and A; group C samples showed a good percentage of cleaned tubules in apical and middle thirds, while group D teeth showed open dentinal tubules in coronal third, with a statistical difference with group A samples which were the worst cleaned. The Er:YAG fiber double irradiation with EDTA 17% and NaOCl 2.5% has been demonstrated to be effective in removing smear layer, even in the apical third which is described as the hardest area to clean during endodontic treatment.
根管系统的清洁和消毒是牙髓治疗中一些最重要的目标。这项初步研究的目的是评估铒激光光纤去除根管壁预备过程中产生的玷污层的有效性。48颗单根管牙先用手动和旋转镍钛器械预备,并用2.5%次氯酸钠冲洗。样本随机分成几组,分别用以下方法处理:用300μm铒激光牙髓光纤,1W功率,2.5%次氯酸钠溶液照射3次,每次5秒(A组);用17%乙二胺四乙酸(EDTA)溶液和2.5%次氯酸钠溶液进行两次激光照射(B组);激光照射加17%EDTA溶液和2.5%次氯酸钠(C组);仅在最后用17%EDTA冲洗(对照组D)。在激光治疗过程中,使用热电偶和热成像仪分析温度变化,以检测深层和表层温度。最后,每个样本在冠部、中部和根尖三分之一处用扫描电子显微镜(SEM)以500倍放大率观察,并根据玷污层的量进行盲法评分。使用Kruskal-Wallis和Mann-Whitney检验对结果进行统计分析,以确定每组玷污层数量之间以及冠部、中部和根尖三分之一处各组之间最终的显著差异:p值<0.05被认为具有显著性。用热电偶以所用参数进行的热分析表明,激光牙髓光纤使平均深层温度升高3.5±0.4℃;用热成像仪进行的分析表明,使用激光牙髓光纤使平均表层温度升高1.3±0.2℃。照射后深层和表层温度立即下降,可能不会对根管内部或牙周组织造成结构损伤或解剖改变。SEM分析表明,B组样本在每个三分之一处的清洁程度最高,与D组和A组有显著差异;C组样本在根尖和中部三分之一处显示出良好的清洁根管比例,而D组牙齿在冠部三分之一处显示出开放的牙本质小管,与清洁最差的A组样本有统计学差异。已证明用17%EDTA和2.5%次氯酸钠对铒激光光纤进行双重照射在去除玷污层方面是有效的,即使在根尖三分之一处,这是牙髓治疗中最难清洁的区域。