Evaluation of Sealing Ability of Calcium Silicate Materials with Diode Laser for Root Furcation Repair

Halkai Rahul S, Ahmed Amaan, Halkai Kiran R, Shereen Fatima, Sumapriya Sulgante, Raesunnisa Begum
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Abstract

Background Inadequate furcation repair often leads to tooth loss due to accompanying endodontic and periodontal problems. An appropriate material and technique can prevent this. This study aimed to evaluate the sealing ability of Mineral Trioxide Aggregate MTA Glass Ionomer Cement GIC and Biodentine as a furcation repair material with and without laser.Methods Ninety human extracted mandibular molars were decoronated 3 mm above and below the cementoenamel junction. After access opening sticky wax was placed over the canal orifices. A defect of 1 mm diameter was made the chamber and perforation were flushed with water and dried. Further the specimens were divided into six groups based on the furcation repair materials used n 15. Group 1 MTA with laser Group 2 MTA Group 3 GIC with laser Group 4 GIC Group 5 Biodentine with laser and Group 6 Biodentine. In groups 1 3 and 5 diode 810 laser irradiation was done for furcal defect before placing the materials. Specimens were subjected to 2 methylene blue for 48 hr washed sectioned mesiodistally and depth of dye penetration was examined under stereomicroscope. Statistical software SPSS version 22 was used for analysis. One way analysis of variance followed by Post hoc Tukey multiple comparison test was done p le0.05.Results Among the experimental materials less microleakage was observed with laser activation than without using laser. Biodentine with laser Group 5 showed less microleakage which was statistically significant compared to all the other groups except group 6 i.e Biodentine without laser.Conclusion Biodentine with laser activation was effective in furcation repair and in prevention of microleakage.nbsp
二极管激光对硅酸钙材料根分叉修复密封性能的评价
研究背景:由于牙根缺损和牙周问题的发生,导致牙根缺损的修复不充分。适当的材料和技术可以防止这种情况。本研究旨在评价三氧化矿物骨料MTA玻璃离子水泥GIC和生物牙牙石作为一种有激光和无激光的分形修复材料的密封能力。方法对90颗拔除的人下颌磨牙进行牙髓-牙釉质交界处上下3 mm的装饰。通道打开后,粘蜡被放置在管口。在腔室和穿孔处做一个直径为1毫米的缺陷,用水冲洗并干燥。根据所使用的分叉修复材料将标本分为6组。组1 MTA联合激光组2 MTA组3 GIC联合激光组4 GIC组5 Biodentine联合激光组6 Biodentine组。第1组、第3组和第5组在放置材料前对缺损部位进行激光照射。标本经2亚甲基蓝冲洗48小时,在体视显微镜下观察染料渗透深度。采用统计软件SPSS 22进行分析。单因素方差分析后进行Post hoc Tukey多重比较检验,p < 0.05。结果在实验材料中,激光激活后的微泄漏比未激活时少。除第6组(即不加激光的贝氏汀)外,第5组微渗漏较少,与其他各组相比有统计学意义。结论激光活化生物牙汀具有修复功能和预防微渗漏的作用
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