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基于曝光互易律的一种块状填充型复合树脂的透光率和固化深度。

Light Transmittance and Depth of Cure of a Bulk Fill Composite Based on the Exposure Reciprocity Law.

机构信息

Department of Restorative Dental Sciences, Operative Dentistry Division, College of Dentistry, University of Florida, Gainesville, FL, USA.

Department of Restorative Dentistry, Dental Materials Division, Piracicaba Dental School, UNICAMP - Universidade Estadual de Campinas, Piracicaba, SP, Brazil.

出版信息

Braz Dent J. 2021 Jan-Feb;32(1):78-84. doi: 10.1590/0103-6440202103842.

Abstract

The objective of this study was to evaluate the effect of the exposure reciprocity law of a multi-wave light-emitting diode (LED) on the light transmittance (LT), depth of cure (DOC) and degree of conversion in-depth (DC) of a bulk fill composite. A bulk fill composite (EvoCeram® bulk fill, Ivoclar Vivadent) was photoactivated using the multi-wave LED (VALO™ Cordless, Ultradent). The LED was previously characterized using a spectrophotometer to standardize the time of exposure when using the Standard or Xtra-Power modes with the same radiant exposure of 20J/cm2. LT was evaluated through samples of the bulk fill composite every millimeter till 4 mm in-depth. DOC was evaluated according to the ISO 4049. DC of the central longitudinal cross-section from each sample of the DOC test was mapped using FT-NIR microscopy. Data were statistically analyzed according to the experimental design (α=0.05; ß=0.2). The radiant exposure in the violet wavelength range for Standard and Xtra-Power was 4.5 and 5.0 J/cm2, respectively; for the blue wavelength range the radiant exposure for Standard and Xtra-Power was 15.5 and 15.0 J/cm2, respectively. There was no statistical difference in the DOC using Standard or Xtra-Power light-curing modes, but the DOC was lower than the claimed by the manufacturer (4 mm). The DC was not significantly affected by the light-curing mode up to 4 mm in depth (p>0.05). According to exposure reciprocity law, the reduction in exposure time using the same radiant exposure did not affect the depth of cure of the bulk fill composite.

摘要

本研究旨在评估多波长发光二极管(LED)曝光相互作用定律对块状填充复合材料透光率(LT)、固化深度(DOC)和深度转化率(DC)的影响。使用多波长 LED(VALO™ Cordless,Ultradent)对块状填充复合材料(Ivoclar Vivadent 的 EvoCeram® 块状填充)进行光激活。通过分光光度计对 LED 进行了特性描述,以在使用 Standard 或 Xtra-Power 模式并具有相同 20J/cm2 辐射暴露的情况下标准化曝光时间。通过块状填充复合材料的样品评估 LT,直至 4mm 深度的每毫米。根据 ISO 4049 评估 DOC。使用 FT-NIR 显微镜对每个 DOC 测试样品的中央纵向横截面的 DC 进行映射。根据实验设计(α=0.05;β=0.2)对数据进行了统计分析。标准和 Xtra-Power 的紫光波长范围的辐射暴露分别为 4.5 和 5.0 J/cm2;标准和 Xtra-Power 的蓝光波长范围的辐射暴露分别为 15.5 和 15.0 J/cm2。使用 Standard 或 Xtra-Power 光固化模式的 DOC 没有统计学差异,但 DOC 低于制造商声称的(4mm)。在深度达 4mm 时,DC 不受光固化模式的显著影响(p>0.05)。根据曝光相互作用定律,在相同辐射暴露下减少曝光时间不会影响块状填充复合材料的固化深度。

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