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首页> 外文期刊>Journal of dentistry >An in vitro evaluation of microtensile bond strengths of two adhesive bonding agents to residual dentine after caries removal using three excavation techniques.
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An in vitro evaluation of microtensile bond strengths of two adhesive bonding agents to residual dentine after caries removal using three excavation techniques.

机译:使用三种挖掘技术去除龋齿后,两种粘合剂对残余牙本质的微拉伸粘合强度的体外评估。

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摘要

OBJECTIVES: To assess amounts of residual dentine retained after using three excavation techniques; the microtensile bond strengths (microTBS) to residual dentine, comparing etch-rinse vs. self-etching adhesives. METHODS: 42 carious molars were subdivided (N=21) dependent upon adhesive/composite system (Adper Scotchbond 1XT and Filtek Supreme vs. Filtek Silorane adhesive and composite). Dividing into three (N=7), dependent upon caries excavation technique employed (hand vs. chemo-mechanical: Carisolv gel vs. experimental enzymatic gel (SFC-V)), caries removal was assessed using visual/tactile criteria and in situ autofluorescence (AF) confocal fibre-optic micro-endoscopy (CFOME). Post-restoration/four-week hydrated storage, four 0.9 mm(2) beams per tooth underwent microTBS testing/microscopic analysis of fractured surfaces. Three cavities from each excavation group were analysed using SEM. RESULTS: SEM revealed surface roughness with smear layer occluding tubule orifices in hand-excavated samples and a reduced, variable smear layer for both chemo-mechanical systems. CFOME AF assessment indicated hand excavation left sound dentine, Carisolv left affected dentine and SFC-V slightly under-prepared clinically. Mean microTBS values from etch-rinse samples (27 MPa (SD 3.9), hand; 22 MPa (SD 5.1), Carisolv; 26 MPa (SD 4.4), SFC-V) showed statistical differences between hand and Carisolv groups. Mean microTBS data for self-etch samples (22 MPa (SD 3.3), hand; 27 MPa (SD 6.1), Carisolv; 25 MPa (SD 4.7), SFC-V) showed significant differences between hand and Carisolv, and hand vs. SFC-V. Failure loci distribution in etch-rinse samples was between dentine-adhesive, within adhesive and within composite whereas self-etch samples exhibited failure predominantly between adhesive and composite. CONCLUSIONS: Data indicated that all null hypotheses were disproved.
机译:目的:评估使用三种开挖技术后残留的牙本质残留量;比较蚀刻漂洗和自蚀刻胶粘剂对残余牙本质的微拉伸强度(microTBS)。方法:根据胶粘剂/复合材料系统(Adper Scotchbond 1XT和Filtek Supreme对比Filtek Silorane胶粘剂和复合材料)细分42个龋齿(N = 21)。根据所采用的龋齿挖掘技术(手对化学机械:Carisolv凝胶对实验酶凝胶(SFC-V))分为三个(N = 7),使用视觉/触觉标准和原位自发荧光评估龋齿去除率(AF)共焦光纤微内窥镜(CFOME)。修复后/四周水合存储,每颗牙齿四个0.9 mm(2)光束经过microTBS测试/断裂表面的微观分析。使用SEM分析每个挖掘组的三个空洞。结果:SEM揭示了表面粗糙度,在手工开挖的样品中,涂片层堵塞了小管孔,两种化学机械系统的涂片层均变小。 CFOME AF评估表明手开挖左声牙本质,Carisolv左患牙和SFC-V在临床上准备不足。蚀刻漂洗样品(27 MPa(SD 3.9),手; 22 MPa(SD 5.1),Carisolv; 26 MPa(SD 4.4),SFC-V)的平均microTBS值显示手和Carisolv组之间的统计差异。自蚀刻样品的平均microTBS数据(22 MPa(SD 3.3),手; 27 MPa(SD 6.1),Carisolv; 25 MPa(SD 4.7),SFC-V)显示手与Carisolv之间的显着差异,以及手与。 SFC-V。蚀刻漂洗样品中的失效位点分布在牙本质-粘合剂之间,粘合剂内和复合材料内,而自蚀刻样品的失效位点主要在粘合剂和复合材料之间。结论:数据表明所有无效假设均被反对。

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