首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Effect of light-tip distance on the shear bond strengths of resin-modified glass ionomer cured with high-intensity halogen, light-emitting diode, and plasma arc lights.
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Effect of light-tip distance on the shear bond strengths of resin-modified glass ionomer cured with high-intensity halogen, light-emitting diode, and plasma arc lights.

机译:尖端距离对用高强度卤素灯,发光二极管和等离子弧光固化的树脂改性玻璃离聚物的剪切粘合强度的影响。

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INTRODUCTION: The purpose of this study was to assess the effect of light-tip distance on the shear bond strength and the failure site of brackets cured with 3 light-curing units (high-intensity halogen, light-emitting diode, and plasma arc). METHODS: One hundred thirty-five bovine mandibular permanent incisors were randomly allocated to 9 groups of 15 specimens each. Stainless steel brackets (Victory Series, Unitek/3M, Monrovia, Calif) were bonded with a resin-modified glass-ionomer (Fuji Ortho LC, GC Europe, Leuven, Belgium) to the teeth, and each curing light was tested at 3 distances from the bracket: 0, 3, and 6 mm. After bonding, all samples were stored in distilled water at room temperature for 24 hours and subsequently tested for shear bond strength. RESULTS: When the 3 light-curing units were compared at a light-tip distance of 0mm, they showed no significantly different shear bond strengths. At a light-tip distance of 3 mm, no significant differences were found between the halogen and plasma arc lights, but both lights showed significantly higher shear bond strengths than the light-emitting diode light. At a light-tip distance of 6 mm, no significant differences were found between the halogen and light-emitting diode lights, but both showed significantly lower bond strengths than the plasma arc light. When the effect of the light-tip distance on each light-curing unit was evaluated, the halogen and light-emitting diode lights showed no significant differences among the 3 distances. However, the plasma arc light produced significantly higher shear bond strengths at a greater light-tip distance. No significant differences were found among the adhesive remnant index scores of the various groups, except with the LED light at a distance of 3 mm. CONCLUSIONS: In hard-to-reach areas, the plasma arc curing light is suggested for optimal curing efficiency.
机译:简介:本研究的目的是评估光尖距离对用3个光固化单元(高强度卤素灯,发光二极管和等离子弧)固化的支架的剪切粘结强度和破坏部位的影响。 。方法:将135个牛下颌恒切牙随机分为9组,每组15个标本。将不锈钢支架(Victory Series,Unitek / 3M,蒙罗维亚,加利福尼亚州)与树脂改性的玻璃离聚物(Fuji Ortho LC,GC Europe,比利时鲁汶,比利时)粘合到牙齿,并在3个距离处测试每种固化光距支架:0、3和6毫米。粘合后,将所有样品在室温下于蒸馏水中保存24小时,然后测试剪切粘合强度。结果:当在光尖距离为0mm处比较3个光固化单元时,它们没有显示出显着不同的剪切粘合强度。在3 mm的灯尖距离处,卤素灯和等离子弧光之间没有发现显着差异,但是两种灯均显示出比发光二极管灯高得多的剪切粘结强度。在6 mm的尖端距离处,卤素灯和发光二极管灯之间没有发现显着差异,但是两者均显示出比等离子弧光低得多的结合强度。当评估每个发光固化单元的光尖距离的影响时,卤素灯和发光二极管灯在这三个距离之间没有显示出显着差异。但是,等离子弧光在较大的光尖距离处产生明显较高的剪切粘结强度。除了LED灯在3 mm的距离外,各组的粘合剂残留指数得分之间均未发现显着差异。结论:在难以到达的区域,建议使用等离子弧固化光以达到最佳固化效率。

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