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双固化生物活性和光固化大容量填充复合树脂中厚度依赖性透光率和温度升高

Thickness-Dependent Light Transmittance and Temperature Rise in Dual-Cure Bioactive and Light-Cure Bulk-Fill Composite Resins.

作者信息

Alharbi Reema, Alharbi Eid, Al-Haj Ali Sanaa N, Farah Ra'fat I

机构信息

Dental Intern, College of Dentistry, Qassim University, Al Mulayda 51452, Qassim, Saudi Arabia.

Department of Orthodontics and Pediatric Dentistry, College of Dentistry, Qassim University, Al Mulayda 51452, Qassim, Saudi Arabia.

出版信息

Polymers (Basel). 2023 Jun 27;15(13):2837. doi: 10.3390/polym15132837.

Abstract

This study aimed to assess the light transmittance (T) and temperature increase through different increments of dual-cure bioactive bulk-fill restorative material (ACTIVA), light-cure bulk-fill, and conventional composite resin materials. Cylindrical specimens with a diameter of 8 mm and heights of 1, 2, 3, and 4 mm of ACTIVA, Tetric-N-Ceram bulk-fill (TBF), Filtek One bulk-fill (FBF), and Filtek Z250 (FZ) (n = 6 per group, 96 in total) were light-cured with a visible blue low-intensity light-emitting diode (LED) (650-800 mW/cm irradiance). T, and the temperature increase, were measured using an optical power meter and a digital thermometer during curing. The T mean values ranged between 0.012 and 0.239 (76.02 to 98.81% light attenuation), while the temperature rise mean values ranged between 9.02 and 20.80 °C. The parameters, including material type (partial eta squared (ηp) = 0.284, < 0.0001), thickness (ηp = 0.284, < 0.0001), and their interaction (ηp = 0.185, = 0.047), significantly affected the T values, whereas only the material type (ηp = 0.352, = 0.047) affected the temperature rise values. The T and temperature rise mean values were highest in ACTIVA increments of 1-mm increments, in particular, showing the highest T mean values, followed by similar increments of TBF. A significantly higher T was found in 1-mm increments compared to thicker increments for all materials ( < 0.0001), and a significant positive correlation existed between T and temperature rise values ( = 0.348, = 0.001). These findings show that the bioactive material ACTIVA and TBF allow for better T than the other materials, with ACTIVA recording a higher temperature rise. However, the large light attenuation observed for all materials, irrespective of thickness, suggests that curing in more than one location with a low-intensity LED is necessary to optimize the curing process. Furthermore, incremental filling of bulk-fill materials using a low intensity LED could be beneficial.

摘要

本研究旨在评估双固化生物活性大块充填修复材料(ACTIVA)、光固化大块充填材料和传统复合树脂材料在不同增量下的透光率(T)和温度升高情况。制备了直径8mm、高度分别为1mm、2mm、3mm和4mm的ACTIVA、Tetric-N-Ceram大块充填材料(TBF)、Filtek One大块充填材料(FBF)和Filtek Z250(FZ)的圆柱形试件(每组n = 6,共96个),并用可见蓝光低强度发光二极管(LED)(辐照度650 - 800mW/cm)进行光固化。在固化过程中,使用光功率计和数字温度计测量T和温度升高情况。T的平均值在0.012至0.239之间(光衰减76.02%至98.81%),而温度升高的平均值在9.02至20.80℃之间。材料类型(偏η²(ηp) = 0.284,P < 0.0001)、厚度(ηp = 0.284,P < 0.0001)及其相互作用(ηp = 0.185,P = 0.047)等参数对T值有显著影响,而仅材料类型(ηp = 0.352,P = 0.047)对温度升高值有影响。ACTIVA 1mm增量时的T和温度升高平均值最高,特别是T平均值最高,其次是TBF的类似增量。所有材料1mm增量时的T均显著高于较厚增量时的T(P < 0.0001),且T与温度升高值之间存在显著正相关(r = 0.348,P = 0.001)。这些结果表明,生物活性材料ACTIVA和TBF的透光率优于其他材料,ACTIVA的温度升高更高。然而,无论厚度如何,所有材料均观察到较大的光衰减,这表明使用低强度LED在多个位置进行固化对于优化固化过程是必要的。此外,使用低强度LED对大块充填材料进行分层充填可能是有益的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/938f/10347211/b2415fac2cd8/polymers-15-02837-g001.jpg

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