Knezević A, Tarle Z, Meniga A, Sutalo J, Pichler G, Ristić M
Department of Restorative Dentistry, School of Dentistry, University of Zagreb, Croatia.
J Oral Rehabil. 2001 Jun;28(6):586-91. doi: 10.1046/j.1365-2842.2001.00709.x.
To ensure an adequate clinical composite filling light source for photopolymerization is of great importance. In everyday clinical conditions commonly used unit for polymerization of composite material is halogen curing unit. The development of new blue superbright light emitting diodes (LED) of 470 nm wavelengths comes as an alternative to standard halogen curing unit of 450-470 nm wavelengths. The purpose of this study was to compare the degree of conversion (DC) and temperature rise of four hybrid composite materials: Tetric Ceram, Pertac II, Valux Plus and Degufill Mineral during 40 s illumination with standard halogen curing unit Heliolux GTE of 600 mW cm(-2) intensity, Elipar Highlight soft-start curing unit of 100 mW cm(-2) (10 s) and 700 mW cm(-2) (30 s) intensity and 16 blue superbright LED of minimal intensity of 12 mW cm(-2) on the surface and 1 mm depth. The results revealed only a little bit higher DC values in case of polymerization with even 66 times stronger halogen curing units which showed twice higher temperature than blue diodes. Temperature and DC obtained are higher on the surface than on 1 mm depth regardless on the light source used.
确保用于光聚合的临床复合填充光源充足至关重要。在日常临床条件下,复合材料聚合常用的设备是卤素固化灯。新型470纳米波长的蓝色超亮发光二极管(LED)的出现,可替代标准的450 - 470纳米波长的卤素固化灯。本研究的目的是比较四种混合复合材料:Tetric Ceram、Pertac II、Valux Plus和Degufill Mineral,在使用强度为600 mW cm(-2)的标准卤素固化灯Heliolux GTE、强度为100 mW cm(-2)(10秒)和700 mW cm(-2)(30秒)的Elipar Highlight软启动固化灯以及表面和1毫米深度处最小强度为12 mW cm(-2)的16个蓝色超亮LED照射40秒时的转化率(DC)和温度升高情况。结果显示,即使使用强度高66倍的卤素固化灯进行聚合,DC值也仅略高一点,且其温度比蓝色二极管高两倍。无论使用何种光源,表面获得的温度和DC均高于1毫米深度处。