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首页> 外文期刊>Journal of Dentistry >Effect of 940nm Diode Laser Irradiation on Microtensile Bond Strength of an Etch and Rinse Adhesive (Single Bond 2) to Dentin
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Effect of 940nm Diode Laser Irradiation on Microtensile Bond Strength of an Etch and Rinse Adhesive (Single Bond 2) to Dentin

机译:940nm二极管激光辐照对蚀刻液和冲洗胶(单键2)与牙本质的微拉伸粘合强度的影响

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Statement of the Problem: Laser can influence bonding mechanism by increasing the penetration depth of adhesive in smear layer. The effect of 940 nm diode laser on microtensile bond strength of adhesive to dentin has not been investigated in previous studies. Purpose: The aim of this study was to evaluate the effect of 940 nm diode laser irradiation on microtensile bond strength of Single Bond 2 to dentin.Materials and Method: Thirty sound premolars extracted for orthodontic reasons were randomly divided into five groups as follows: G1 or control: etching+ Single Bond2 (SB); G2: diode laser (940 nm wavelength, 1W power, continuous mode)+ etching+ SB; G3: etching+ laser irradiation+ SB; G4: etching+ SB+ laser irradiation+ adhesive curing; G5: etching+ laser irradiation+ SB +laser irradiation +adhesive curing. After the bonding procedure, Z250 composite resin was applied on the dentin surface in three layers of 2 mm thickness. After 24 hours of immersion in distilled water at 37?°C and thermocycling for 1000 thermal cycles, the teeth were sectioned into 1mm2 sticks. The microtensile bond strength was measured using a universal testing machine. Bond strength (MPs) was analyzed by one-way ANOVA followed by HSD post hoc Tukeya??s test (?±=0.05).Results: G4 (38.35?±8.99) showed the significant highest bond strength compared to other groups (p= 0.000). G5 (25.16?±6.14)showed significantly higher bondstrength than the control group (18.85?±4.79)(p= 0.032).Bond strength of G2 (23.39?±6.07)and G3 (22.85?±5.11)groups was the same and similar to that in the control group (p 0.05).Conclusion: Based on the results of this study, it may be concluded that dentin surface irradiation with 940 nm diode laser after adhesive application and prior to curing can significantly increase the bond strength of composite to dentin.
机译:问题陈述:激光可以通过增加涂片层中粘合剂的渗透深度来影响粘合机理。在以前的研究中尚未研究过940 nm二极管激光器对粘合剂与牙本质的微拉伸粘合强度的影响。目的:本研究的目的是评估940 nm二极管激光辐照对单键2与牙本质的微拉伸键强度的影响。材料与方法:将30颗由于正畸原因而提取的前磨牙随机分为五组:G1或控制:蚀刻+ Single Bond2(SB); G2:二极管激光器(940nm波长,1W功率,连续模式)+刻蚀+ SB; G3:刻蚀+激光照射+ SB; G4:蚀刻+ SB +激光辐照+胶粘剂固化; G5:蚀刻+激光照射+ SB +激光照射+粘合剂固化。粘合步骤后,将Z250复合树脂以3层2 mm的厚度涂在牙本质表面上。在37°C的蒸馏水中浸泡24小时并热循环1000个热循环后,将牙齿切成1mm2的棍棒。使用通用测试机测量微拉伸粘合强度。通过单因素方差分析和HSD事后Tukeya检验(?±= 0.05)对结合强度(MPs)进行分析。结果:与其他组相比,G4(38.35?±8.99)显示出最高的结合强度(p = 0.000)。 G5(25.16?±6.14)的粘结强度显着高于对照组(18.85?±4.79)(p = 0.032).G2(23.39?±6.07)和G3(22.85?±5.11)组的结合强度相同,并且结论:基于这项研究的结果,可以得出结论,在粘接剂施加之后和固化之前,用940 nm二极管激光器对牙本质进行表面辐照可以显着提高牙本质的粘合强度。复合牙本质。

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