两种激光运动模式与传统正畸陶瓷托槽脱粘技术在珐琅质表面形貌上的对比效果。

IF 2.1 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Alarifi Abdulaziz, Moataz Mohamed El-Kholy, Sherif Samir Bushra, Sara Mohamed Ali, Karim A Shehab
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引用次数: 0

摘要

牙齿正畸托槽脱粘时经常会出现珐琅质退化的风险,这就要求找到一种最佳方法,在不产生有害影响的情况下进行托槽脱粘。这项体外研究旨在比较两种不同的激光模式(扫描模式和环形模式)和一种传统方法对正畸托槽脱粘后牙釉质表面的影响。66 颗拔出的前臼齿被分成 3 组。然后用光固化复合树脂将陶瓷托槽固定在牙齿上。在测试组中,第 I 组:使用钳子进行传统剥离的试样;第 2 组:使用 Er、Cr:YSGG激光应用圆周运动法进行脱粘的试样;第3组:使用Er, Cr:YSGG激光应用扫描运动法进行脱粘的试样。使用扫描电子显微镜对粘合剂残留指数(ARI)、髓内温升、抛光后的珐琅质表面粗糙度以及珐琅质的微观结构进行了评估。对收集到的信息进行了统计分析。与环形剥离法相比,传统剥离法的粘接残留指数(ARI)为 2 分和 3 分的比例明显更高(P .05)。此外,与传统技术组相比,环形和扫描激光剥离法导致釉质表面粗糙度(ESR)评分为 0 的比例明显较高,而 ESR 评分为 3 的比例较低(p.05)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Performance of two laser motion modes versus conventional orthodontic ceramic brackets debonding technique on enamel surface topography.

Performance of two laser motion modes versus conventional orthodontic ceramic brackets debonding technique on enamel surface topography.

The risk of enamel deterioration that frequently coexists with debonding of orthodontic teeth brackets elevates the mandate for finding an optimum approach for debonding them without harmful effects. This in-vitro study is intended to compare the effects of two different laser modes (scanning and circular) and a conventional method on the enamel surface after debonding orthodontic brackets. 66 extracted premolars were assigned into 3 groups. After that, light-cure composite resin was used to attach the ceramic brackets to the teeth. Amongst the test groups, Group I: specimens that were debonded using conventional debonding using pliers; Group 2: specimens that were debonded using Er, Cr: YSGG laser applications using the circular motion method; and Group 3: specimens that were debonded using Er, Cr: YSGG laser applications using the scanning motion method. Adhesive Remnant Index (ARI) assessment, intra-pulpal temperature increase, enamel surface roughness after polishing, and assessment of the microstructure of enamel were carried out with scanning electron microscopy. The gathered information was examined statistically. The conventional debonding method had a significantly higher proportion of adhesive remnant index (ARI) scores of 2 and 3 in comparison to the circular (p < .004) and scanning laser groups (p < .001). There was no significant difference in ARI scores between the circular and scanning laser groups (p > .05). Moreover, the circular and scanning laser debonding methods resulted in a significantly higher proportion of Enamel Surface Roughness (ESR) scores of 0 and a lower proportion of ESR scores of 3 compared to the conventional technique group (p < .001). However, there was no significant difference in ESR scores between the circular and scanning laser methods (p = .945). Lastly, the average intra-pulpal temperature was significantly higher in the circular laser group (1.9 ± 0.5 ) compared to the scanning laser group (0.9 ± 0.2) with p < .001. Er, Cr: YSGG laser irradiation is a tool that shows promise for debonding ceramic brackets with minimal harm to the enamel surface. The scanning laser technique is more desirable due to the lower intra-pulpal temperature increase.

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来源期刊
Lasers in Medical Science
Lasers in Medical Science 医学-工程:生物医学
CiteScore
4.50
自引率
4.80%
发文量
192
审稿时长
3-8 weeks
期刊介绍: Lasers in Medical Science (LIMS) has established itself as the leading international journal in the rapidly expanding field of medical and dental applications of lasers and light. It provides a forum for the publication of papers on the technical, experimental, and clinical aspects of the use of medical lasers, including lasers in surgery, endoscopy, angioplasty, hyperthermia of tumors, and photodynamic therapy. In addition to medical laser applications, LIMS presents high-quality manuscripts on a wide range of dental topics, including aesthetic dentistry, endodontics, orthodontics, and prosthodontics. The journal publishes articles on the medical and dental applications of novel laser technologies, light delivery systems, sensors to monitor laser effects, basic laser-tissue interactions, and the modeling of laser-tissue interactions. Beyond laser applications, LIMS features articles relating to the use of non-laser light-tissue interactions.
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