Department of Biomedical Applications, Institute of Laser for Postgraduate Studies, University of Baghdad, Baghdad, Iraq.
Aust Dent J. 2023 Jun;68(2):125-134. doi: 10.1111/adj.12958. Epub 2023 Apr 25.
The removal of porcelain laminate veneers with rotary instruments could be accompanied by microfractures because differentiation of the veneer from the dental structure and resin cement is not a highly selective procedure. This can lead to scratches and overheating of the enamel and patient discomfort. Therefore, this in vitro research aimed to examine the effectiveness of the 2790 nm Er,Cr:YSGG laser utilizing a fractional technique to debond lithium disilicate veneer.
Six groups of 30 extracted permanent bovine mandibular incisors were selected. Twenty-five samples, G1-5, (n = 5) laser-irradiated groups, and the last five samples (C) were considered the control group. The tested groups were irradiated with 3-5 W output power of Er,Cr:YSGG laser for time intervals of 50 s. During irradiation, the temperature in the pulp chamber was monitored using a thermocouple connected to a digital multilogger thermometer inside the sample's pulp chamber. Subsequently, the shear bond strength was measured for all groups. Furthermore, the remaining adhesive index was measured using a stereomicroscope, the area was analysed, and then transformed into scores. Finally, one untreated sample and two samples of the highest power value from laser-treated groups were examined using a scanning electron microscope (SEM) for their surface morphology.
All debonding protocols were safe regarding intrapulpal temperature increment. The highest temperature elevation was recorded at 5 W, which increased by 1.7 °C. Considering the shear bond strength measurement, there was a significant reduction after laser irradiation for G1-5 compared with group C.
Er,Cr:YSGG laser with a fractional technique can be used successfully for veneer removal. Besides safe temperature rising, veneers can be reused because there was neither a fractured specimen during the whole study nor major irregularities or cracks shown in SEM pictures analysis for the veneer surfaces; thus, they can be removed quickly, safely, and comfortably using Er,Cr:YSGG. © 2023 Australian Dental Association.
使用旋转器械去除瓷贴面可能会伴随微裂纹,因为将贴面与牙体结构和树脂水门汀分离并不是一个高度选择性的过程。这可能会导致釉质划伤和过热以及患者不适。因此,这项体外研究旨在检查 2790nmEr,Cr:YSGG 激光利用分束技术对锂硅瓷贴面进行去粘接的有效性。
选择 6 组 30 个离体的下颌恒切牙。25 个样本(G1-5,n=5)为激光照射组,最后 5 个样本(C)为对照组。测试组用 3-5W 的 Er,Cr:YSGG 激光照射 50s。照射过程中,用连接在样本牙髓腔内数字多用表温度计的热电偶监测牙髓腔内的温度。然后,测量所有组的剪切粘结强度。此外,使用立体显微镜测量剩余的粘结指数,对其面积进行分析,然后转换为分数。最后,用扫描电子显微镜(SEM)检查未经处理的样本和激光处理组中最高功率值的两个样本的表面形貌。
所有的离胶协议在牙髓腔内温度升高方面都是安全的。在 5W 时记录到最高的温度升高,增加了 1.7°C。考虑到剪切粘结强度测量,与对照组 C 相比,G1-5 组激光照射后粘结强度显著降低。
采用分束技术的 Er,Cr:YSGG 激光可成功用于贴面去除。除了温度升高安全外,贴面可以重复使用,因为在整个研究过程中没有出现破裂的样本,也没有在 SEM 图片分析中显示出贴面表面有较大的不规则或裂缝;因此,使用 Er,Cr:YSGG 可以快速、安全、舒适地去除贴面。©2023 澳大利亚牙科协会。