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Sealing ability and adaptation of root-end filling materials in cavities prepared with different techniques

机译:用不同技术制备的空腔中根端填充材料的密封能力和调整

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摘要

The aim of this study was to evaluate the sealing ability and marginal adaptation of calcium silicate-based cements (CSCs) in root-end cavities prepared by ultrasonic and laser tips. A total of 72 extracted human maxillary incisor teeth were randomly divided as 60 teeth in experimental groups and 6 teeth each for positive and negative control groups. Specimens in experimental groups were obturated, their root-end resections were performed and randomly divided into six groups (n=10) as follows: G1: Ultrasonic retrotip+MTA, G2: Ultrasonic retrotip+Calcium Enriched Mixture (CEM), G3: Ultrasonic retrotip+Biodentine, G4: Er:YAG laser tip+MTA, G5: Er:YAG laser tip+CEM, G6: Er:YAG laser tip+Biodentine. The sealing ability was measured by fluid transport method. Six specimens from each experimental group were randomly selected to analyze marginal adaptation and prepared for scanning electron microscopy (SEM) analysis. Micrographs were scored and also analyzed using Image J software. Data were analyzed with; two-way ANOVA, Bonferroni, Kruskall-Wallis, Mann-Whitney-U, Siegel & Castellan, and Spearman correlation coefficient tests. No significant difference was found between materials regarding the sealing ability and marginal adaptation (p>0.05). Significantly greater fluid movement and poor marginal adaptation were seen for materials placed in cavities prepared by laser tips (p<0.05). Positive correlation was found between the results of scoring and Image J analysis of SEM images (r=0.596, p<0.001). Fluid transport method and SEM analysis gave similar results suggesting the use of ultrasonic-retrotips for preparing root-end cavities which are going to be filled with one of these CSCs.
机译:本研究的目的是评估通过超声波和激光尖端制备的根端腔内的硅酸钙基水泥(CSC)的密封能力和边际适应。总共72个提取的人上颌切牙牙齿在实验组中随机分为60颗牙齿,每组6颗牙齿,用于阳性和阴性对照组。封闭实验组中的试样,将其根部端切除进行并随机分为6组(n = 10),如下:G1:超声波反射+ MTA,G2:超声波陶陶+富集的混合物(CEM),G3:超声波Retotip + Biodentine,G4:ER:YAG激光尖端+ MTA,G5:ER:YAG激光尖端+ CEM,G6:ER:YAG激光尖端+生物烯烃。通过流体运输方法测量密封能力。来自每个实验组的六个标本被随机选择分析边缘适应并制备用于扫描电子显微镜(SEM)分析。使用图像J软件分析显微照片并分析。数据进行了分析;双向Anova,Bonferroni,Kruskall-Wallis,Mann-Whitney-U,Siegel&Castellan和Spearman相关系数测试。在有关密封能力和边际适应的材料之间没有发现显着差异(P> 0.05)。对于通过激光提示制备的空腔(P <0.05),可以看到更大的流体运动和差的边际适应差的材料。 SEM图像评分结果和Image J分析结果存在正相关(r = 0.596,p <0.001)。流体传输方法和SEM分析具有类似的结果,提示使用超声波回复用于制备将要填充其中一个CSC的根腔。

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