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首页> 外文期刊>American Journal of Orthodontics and Dentofacial Orthopedics >Effects of fast halogen and plasma arc curing lights on the surface hardness of orthodontic adhesives for lingual retainers.
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Effects of fast halogen and plasma arc curing lights on the surface hardness of orthodontic adhesives for lingual retainers.

机译:快速卤素灯和等离子弧光固化灯对用于牙齿固定器的正畸粘合剂表面硬度的影响。

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摘要

The aims of this study were to (1) identify the optimum cure times of 2 different lingual retainer adhesives with a conventional halogen, a fast halogen, and a plasma arc light by measuring Vickers surface hardness, and (2) determine whether different lights produce similar surface hardness values for the same adhesive resin material. The investigated plasma arc curing unit was the PowerPac (American Dental Technologies, Corpus Christi, Tex), and the fast halogen unit was the Optilux 501 (Kerr, Orange, Calif). A conventional curing unit, the Ortholux XT (3M Dental Products, St. Paul, Minn) was used as the control. Two orthodontic lingual retainer adhesives were used: Transbond Lingual Retainer (3M Unitek, Monrovia, Calif) and Light Cure Retainer (Reliance Orthodontic Products, Itasca, Ill). Concise (3M Dental Products) and diluted Concise were used as controls. Transbond Lingual Retainer was polymerized by the PowerPac light in 6 seconds, by the Optilux in 10 seconds, and by the conventional halogen light in 20 seconds. The minimum curing times for Light Cure Retainer adhesive were 15 seconds for PowerPac, 10 seconds for Optilux, and 40 seconds for conventional halogen. Surface hardness values for each resin did not differ significantly with different curing units. However, different adhesives demonstrated significantly different surface hardness values. Final Vickers surface hardness values (averaged across curing units) of Transbond Lingual Retainer, Concise, diluted Concise, and Light Cure Retainer were 62.8, 52.4, 46.0, and 40.4, respectively. Plasma arc or fast halogen units polymerize resin composite adhesive in much shorter times than do conventional curing units, without a significant loss in surface hardness. Therefore, these units are suggested for clinical use to save chairside time.
机译:这项研究的目的是(1)通过测量维氏表面硬度来确定两种不同的具有常规卤素,快速卤素和等离子弧光的不同语言固位胶的最佳固化时间,以及(2)确定是否产生不同的光对于相同的粘合树脂材料,表面硬度值相似。研究的等离子弧固化设备是PowerPac(美国牙科技术公司,得克萨斯州科珀斯克里斯蒂),快速卤素设备是Optilux 501(Kerr,奥兰治,加利福尼亚)。常规的固化装置Ortholux XT(3M牙科产品,明尼苏达州圣保罗)用作对照。使用了两种正畸舌状固位体粘合剂:Transbond舌状固位体(3M Unitek,蒙罗维亚,加利福尼亚)和光固化固位体(Reliance Orthodontic Products,Itasca,伊利诺伊州)。简明(3M牙科产品)和稀释的简明用作对照。 Transbond Lingual Retainer在6秒内通过PowerPac灯,在10秒内通过Optilux以及在20秒内通过传统的卤素灯聚合。对于LightPure Retainer粘合剂,最短固化时间对于PowerPac是15秒,对于Optilux是10秒,对于常规卤素是40秒。每种树脂的表面硬度值在不同的固化单元下均无显着差异。然而,不同的粘合剂表现出明显不同的表面硬度值。 Transbond Lingual固定器,Concise,稀释的Concise和Light Cure固定器的最终Vickers表面硬度值(各个固化单元的平均值)分别为62.8、52.4、46.0和40.4。等离子弧或快速卤素单元可在比传统固化单元短得多的时间内聚合树脂复合粘合剂,而不会显着降低表面硬度。因此,建议将这些装置用于临床以节省椅子时间。

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