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首页> 外文期刊>Brazilian Dental Journal >Compressive strength of esthetic restorative materials polymerized with quartz-tungsten-halogen light and blue LED
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Compressive strength of esthetic restorative materials polymerized with quartz-tungsten-halogen light and blue LED

机译:石英钨卤素灯和蓝色LED聚合的美学修复材料的抗压强度

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This study compared the compressive strength of a composite resin and compomer photoactivated with a conventional quartz-tungsten halogen-light (XL 3000, 3M/SPE) and a blue light-emitting diode (LED) (SmartLite PS; Dentsply/De Trey). Forty disc-shaped specimens were prepared using a split polytetrafluoroethylene matrix (4.0 mm diameter x 8.0 mm hight) in which the materials were inserted incrementally. The curing time of each increment was of 40 s with the QTH and 10 s with the LED. The specimens were randomly assigned to 4 groups (n=10), according to the light source and the restorative material. After storage in distilled water at 37oC ± 2oC for 24 h, the specimens was tested in compressive strength in a universal testing machine with load cell of 500 kgf running at a crosshead speed of 0.5 mm/min. Data (in MPa) were analyzed statistically by ANOVA and Student-Newman-Keuls test (p0.05) in the compressive strength when compared to light curing with the LED source. However, light curing of the compomer with the QTH source resulted in significantly higher compressive strength than the use of the LED unit (p>0.05). The composite resin presented significantly higher (p>0.05) compressive strength than the compomer, regardless of the light source. In conclusion, the compressive strength of the tested materials photoactivated with a QTH and a LED light source was influenced by the energy density employed and the chemical composition of the esthetic restorative materials.
机译:这项研究比较了用传统的石英钨卤素灯(XL 3000、3M / SPE)和蓝色发光二极管(LED)(SmartLite PS; Dentsply / De Trey)光活化的复合树脂和复合物的抗压强度。使用分裂的聚四氟乙烯基质(直径4.0毫米x高8.0毫米)制备了40个盘状样品,其中材料逐渐插入其中。 QTH每次固化的时间为40 s,LED固化时间为10 s。根据光源和修复材料,将样本随机分为4组(n = 10)。在37oC±2oC的蒸馏水中存储24小时后,在具有500 kgf称重传感器,十字头速度为0.5 mm / min的通用测试机中测试样品的抗压强度。与使用LED光源进行光固化相比,通过ANOVA和Student-Newman-Keuls检验(p0.05)对数据(以MPa为单位)进行了抗压强度的统计分析。但是,与QTH光源相比,使用QTH光源进行光固化会导致压缩强度明显高于使用LED单元(p> 0.05)。无论光源如何,复合树脂的压缩强度均显着高于复合树脂(p> 0.05)。总之,被QTH和LED光源光活化的被测材料的抗压强度受所用能量密度和美学修复材料化学成分的影响。

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