The Impact of Different Final Apical Preparation Diameters on the Efficiency of Photon-Induced Photoacoustic Streaming (PIPS) in Removing the Smear Layer at the Apical Third

K. Almadi, M. Alkahtany
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Abstract

Aims: Photon-induced Photoacoustic streaming (PIPS) as an adjunct to conventional irrigation (CI) using different final apical preparation diameters on smear layer (SL) Material and method: Clinical crown was removed from forty human mandibular molars standardizing root length to 18 mm. Chamber was opened and straight-line access was established Working length was kept 1 mm short of the apex. Teeth were randomly divided into 4 investigated groups based on the final apical diameter. Group-1 (F1+CI+PIPS), Group-2 (F2+CI+PIPS), Group-3 (F3+CI+PIPS) and Group-4 (F3+CI) (Control). CI protocol (2.5% NaOCl+17% EDTA+2.5% NaOCl+distilled water). SEM magnification of 5000x dentinal tubules’ patency at the apical third of root canals was assessed. ANOVA and Tukey’s HSD test were used for data analysis (p = 0.05) Results: Group-3 (F3+CI+PIPS displayed the highest mean scores (3.64±0.50) of SL removal from the apical third of the canal. However, Group-1 (F1+CI+PIPS) exhibited the lowest mean scores (1.27±0.47). Intergroup comparison analysis revealed that Group 1 and Group 2 (F2+CI+PIPS) presented the lowest and most comparable SL removal (p >0.05) Conclusion: Photon-induced Photoacoustic streaming should be considered as an adjunct therapy to improve the cleanliness of the Smear layer from the apical third.
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不同最终顶端制备直径对光子诱导光声流(PIPS)去除顶端三分之一涂抹层效率的影响
目的:在涂片层(SL)上使用不同最终根尖制备直径的光子诱导光声流(PIPS)作为常规灌洗(CI)的辅助手段。材料和方法:从40颗标准根长为18 mm的下颌磨牙上取下临床冠。打开腔室,建立直线通道,工作长度保持在离顶点1mm的距离。按最终根尖直径随机分为4组。组1 (F1+CI+PIPS)、组2 (F2+CI+PIPS)、组3 (F3+CI+PIPS)、组4 (F3+CI)(对照组)。CI方案(2.5% NaOCl+17% EDTA+2.5% NaOCl+蒸馏水)。扫描电镜(SEM)对根管顶端三分之一处5000x牙本质小管的开放情况进行了评估。采用方差分析和Tukey’s HSD检验进行数据分析(p = 0.05)。结果:组3 (F3+CI+PIPS)对根管顶端三分之一的SL去除的平均评分最高(3.64±0.50)。而组1 (F1+CI+PIPS)平均评分最低(1.27±0.47)。组间比较分析显示,F2+CI+PIPS组1和2组(F2+CI+PIPS)的SL去除率最低且最具可比性(p >0.05)。结论:光子诱导光声流可作为一种辅助治疗,从根尖三分之一开始提高涂片层的清洁度。
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