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使用激光二极管或发光二极管固化灯光固化的树脂基复合材料的温度变化和硬度

Temperature changes and hardness of resin-based composites light-cured with laser diode or light-emitting diode curing lights.

作者信息

Maucoski Cristiane, Price Richard Bengt, Arrais Cesar Augusto Galvão

机构信息

Department of Dental Clinical Sciences, Dalhousie University, Halifax, NS, B3H 4R2, Canada.

Department of Restorative Dentistry, The State University of Ponta Grossa, 4748 General Carlos Cavalcanti Av., Ponta Grossa, Parana, 84051-130, Brazil.

出版信息

Odontology. 2023 Apr;111(2):387-400. doi: 10.1007/s10266-022-00745-1. Epub 2022 Oct 3.

Abstract

The temperature and Vickers Hardness (VH) at the top and bottom surfaces of three resin-based composites (RBCs) were measured when light-cured using five light-curing units (LCUs). The spectrum, power, and energy delivered to the top of the RBCs and transmitted through the RBCs were measured. Starting at 32℃, the temperature rise produced by the Monet Laser (ML-1 s and 3 s), Valo Grand (VG-3 s and 10 s), DeepCure (DC-10 s), PowerCure, (PC-3 s and 10 s) and PinkWave (PW-10 s) were measured at the bottom of specimens 2 mm deep × 6 mm wide made of Filtek Universal A2, Tetric Evoceram A2 and an experimental RBC codenamed Transcend UB. The VH values measured at the top and bottom of these RBCs were analyzed using ANOVA and Scheffe's post hoc test (p < 0.05) to determine the effects of the LCUs on the RBCs. The transmitted power from the ML was reduced by 77.4% through 2 mm of Filtek Universal, whereas light from PW decreased by only 36.8% through Transcend. The highest temperature increases from the LCU combined with the exothermic reaction occurred for Transcend, and overall, no significant differences were detected between Filtek Universal and Tetric Evoceram (p = 0.9756). Transcend achieved the highest VH values at the top and bottom surfaces. The PinkWave used for 10 s produced the largest temperature increase (20.2℃) in Transcend. The Monet used for 1 s produced the smallest increase (7.8℃) and the lowest bottom:top VH ratios.

摘要

使用五个光固化单元(LCU)对三种树脂基复合材料(RBC)进行光固化时,测量了其顶面和底面的温度及维氏硬度(VH)。测量了传递到RBC顶部并透过RBC的光谱、功率和能量。从32℃开始,测量了由Filtek Universal A2、Tetric Evoceram A2和一种代号为Transcend UB的实验性RBC制成的2毫米深×6毫米宽的试样底部,由Monet Laser(ML - 1秒和3秒)、Valo Grand(VG - 3秒和10秒)、DeepCure(DC - 10秒)、PowerCure(PC - 3秒和10秒)和PinkWave(PW - 10秒)产生的温度升高。使用方差分析(ANOVA)和谢费事后检验(p < 0.05)分析这些RBC顶面和底面测得的VH值,以确定LCU对RBC的影响。通过2毫米厚的Filtek Universal,来自ML的透射功率降低了77.4%,而通过Transcend,来自PW的光仅降低了36.8%。对于Transcend,LCU与放热反应相结合产生的温度升高最高,总体而言,在Filtek Universal和Tetric Evoceram之间未检测到显著差异(p = 0.9756)。Transcend在顶面和底面获得了最高的VH值。用于10秒的PinkWave在Transcend中产生的温度升高最大(20.2℃)。用于1秒的Monet产生的升高最小(7.8℃),且底部与顶部VH比值最低。

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