Bagis Bora, Bagis Yildirim, Ertas Ertan, Ustaomer Seda
Department of Prosthetic Dentistry of the Faculty of Dentistry at Karadeniz Technical University in Trabzon, Turkey.
J Contemp Dent Pract. 2008 Feb 1;9(2):65-72.
The aim of this study was to evaluate the heat generation of three different types of light curing units.
Temperature increases were recorded from a distance of 1 mm from a thermocouple to the tip of three different types of light curing units including one quartz-tungsten halogen (QTH), one plasma arc (PAC), and one light emitting diode (LED) unit. An experimental model was designed to fix the 1 mm distance between the tip of the light curing units and the thermocouple wire. Temperature changes were recorded in 10 second intervals up to 40 seconds. (10, 20, 30, and 40 seconds). Temperature measurements were repeated three times for every light curing unit after a one hour standby period. Statistical analysis of the results was performed using the analysis of variance (ANOVA) and the Bonferroni Test.
The highest temperature rises (54.4+/-1.65 degrees C) occurred during activation of a PAC light curing unit for every test period (p<.05). The least temperature increase (11.8+/-1.3 degrees C) occurred with a LED curing unit for each tested period except for the measurement of the temperature rise using the QTH curing unit at the tenth second interval (p<.05).
These results indicate the choice of light activation unit and curing time is important when polymerizing light activated resin based restorations to avoid any thermal damage to the pulp.
本研究旨在评估三种不同类型光固化机的产热情况。
在距离三种不同类型光固化机(包括一台石英钨卤素灯(QTH)、一台等离子弧光灯(PAC)和一台发光二极管(LED)灯)的尖端1毫米处,从热电偶记录温度升高情况。设计了一个实验模型,以固定光固化机尖端与热电偶线之间1毫米的距离。每隔10秒记录一次温度变化,直至40秒(10、20、30和40秒)。在一小时的待机期后,对每个光固化机的温度测量重复三次。使用方差分析(ANOVA)和邦费罗尼检验对结果进行统计分析。
在每个测试时间段内,激活PAC光固化机时温度升高最高(54.4±1.65摄氏度)(p<0.05)。除在第10秒间隔使用QTH固化机测量温度升高外,在每个测试时间段内,LED固化机的温度升高最少(11.8±1.3摄氏度)(p<0.05)。
这些结果表明,在聚合光活化树脂基修复体时,选择光活化单元和固化时间对于避免对牙髓造成任何热损伤非常重要。