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铒激光照射对特定生物陶瓷根管封闭剂表面的影响——体外扫描电子显微镜研究

Er:YAG laser irradiation surface effect of set bioceramic endodontic sealer - in vitro SEM study.

作者信息

Stefanova V, Zhekov K

机构信息

Department of Operative Dentistry and Endodontics, Faculty of Dental Medicine, Medical University of Plovdiv, Plovdiv, Bulgaria.

出版信息

Front Bioeng Biotechnol. 2025 Apr 24;13:1562578. doi: 10.3389/fbioe.2025.1562578. eCollection 2025.

Abstract

INTRODUCTION

Recent developments in endodontics have led to increased interest in utilizing different methods for the removal of bioceramic endodontic sealers. The Er:YAG laser's specific wavelength and energy delivery, we foresee its potential in laser-assisted removal of bioceramic sealers like BioRoot RCS.

AIM

The primary aim is to examine the influence of Er:YAG laser irradiation on set BioRoot RCS and to discern and compare the effects on the sealer of two different time durations and two distinct laser settings.

MATERIALS AND METHODS

Specimens of BioRoot RCS (n = 20), each 10 mm in diameter and 3 mm thickness, were prepared according to manufacturer guidelines and set for 48 h at 37°C and 100% relative humidity. The "LiteTouch" Er:YAG laser system was applied with two different settings: 300 mJ, 5.10 W, 17 Hz, and water spray rate of 5, irradiation time 20 s for Group A (n = 5) and 40 s for Group B (n = 5). Settings of 250 mJ, 5.00 W, 20 Hz, with the same spray rate were used for 20 s irradiation for Group C (n = 5) and 40 s for Group D (n = 5). The laser sapphire tips employed were with dimensions D-1.3 mm and L-19 mm. Only half of each specimen underwent laser treatment, ensuring a controlled and comparative analysis of surface alterations and material removal, assessed using scanning electron microscopy on four different magnifications (x1,000; x2,000; x5,000 and x10,000).

RESULTS

All irradiated specimens demonstrated significant macroscopic and microscopic surface changes. We selected and compared scenograms of non-laser treated surfaces and laser treated surfaces of all experimental groups on the four magnifications. For Group A and Group B a greater effect on the material surface was observed in comparison with group C and Group D. Group B and Group D presented more substantial surface alterations compared to group A and Group C respectively.

CONCLUSION

Er: YAG laser irradiation effectively alters the surface of the set BioRoot RCS. Longer irradiation time and bigger overall energy settings show superior changes. This pioneer investigation shows the possible use of lasers for bioceramic sealer removal in order to impact retreatment endodontic procedures.

摘要

引言

牙髓病学的最新进展引发了人们对采用不同方法去除生物陶瓷牙髓封闭剂的兴趣日益浓厚。考虑到铒钇铝石榴石(Er:YAG)激光的特定波长和能量传递方式,我们预见到其在激光辅助去除BioRoot RCS等生物陶瓷封闭剂方面的潜力。

目的

主要目的是研究Er:YAG激光照射对固化后的BioRoot RCS的影响,并识别和比较两种不同照射时间和两种不同激光设置对封闭剂的效果。

材料与方法

按照制造商指南制备BioRoot RCS样本(n = 20),每个样本直径10毫米,厚度3毫米,在37°C和100%相对湿度下固化48小时。使用“LiteTouch”Er:YAG激光系统,设置两种不同参数:A组(n = 5)为300 mJ、5.10 W、17 Hz,喷水速率5,照射时间20秒;B组(n = 5)照射时间40秒。C组(n = 5)为250 mJ、5.00 W、20 Hz,喷水速率相同,照射20秒;D组(n = 5)照射时间40秒。所用激光蓝宝石头尺寸为直径1.3毫米、长度19毫米。每个样本仅一半接受激光处理,以确保对表面变化和材料去除进行可控的对比分析,使用扫描电子显微镜在四种不同放大倍数(x1,000;x2,000;x5,000和x10,000)下进行评估。

结果

所有接受照射的样本均呈现出明显的宏观和微观表面变化。我们在四种放大倍数下选择并比较了所有实验组未激光处理表面和激光处理表面的扫描图像。与C组和D组相比,观察到A组和B组对材料表面的影响更大。与A组和C组相比,B组和D组分别呈现出更显著的表面变化。

结论

Er:YAG激光照射能有效改变固化后的BioRoot RCS的表面。更长的照射时间和更高的总能量设置显示出更显著的变化。这项开创性研究表明激光在去除生物陶瓷封闭剂方面的潜在用途,从而对牙髓再治疗程序产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cce/12058662/d9549ffe1525/fbioe-13-1562578-g001.jpg

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