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使用多波和单峰发光二极管固化灯时,厚度对五种大块充填树脂基复合材料的透光率和维氏硬度的影响。

Effect of Thickness on Light Transmission and Vickers Hardness of Five Bulk-fill Resin-based Composites Using Polywave and Single-peak Light-emitting Diode Curing Lights.

作者信息

Maghaireh G A, Price R B, Abdo N, Taha N A, Alzraikat H

出版信息

Oper Dent. 2019 Jan/Feb;44(1):96-107. doi: 10.2341/17-163-L. Epub 2018 Jun 28.

Abstract

OBJECTIVES

: This study compared light transmission through different thicknesses of bulk-fill resin-based composites (RBCs) using a polywave and a single-peak light-emitting diode light-curing unit (LCU). The effect on the surface hardness was also evaluated.

METHODS

: Five bulk-fill RBCs were tested. Specimens (n=5) of 1-, 2-, 4-, or 6-mm thickness were photopolymerized for 10 seconds from the top using a polywave (Bluephase Style) or single-peak (Elipar S10) LCU, while a spectrophotometer monitored in real time the transmitted irradiance and radiant exposure reaching the bottom of the specimen. After 24 hours of storage in distilled water at 37°C, the Vickers microhardness (VH) was measured at top and bottom. Results were analyzed using multiple-way analysis of variance, Tukey post hoc tests, and multivariate analysis (α=0.05).

RESULTS

: The choice of LCU had no significant effect on the total amount of light transmitted through the five bulk-fill RBCs at each thickness. There was a significant decrease in the amount of light transmitted as the thickness increased for all RBCs tested with both LCUs ( p<0.001). Effect of LCU on VH was minimal (η=0.010). The 1-, 2-, and 4-mm-thick specimens of SDR, X-tra Fill, and Filtek Bulk Restorative achieved a VH ratio of approximately 80% when either LCU was used.

CONCLUSIONS

: The total amount of light transmitted through the five bulk-fill RBCs was similar at the different thicknesses using either LCU. The polywave LCU used in this study did not enhance the polymerization of the tested bulk-fill RBCs when compared with the single-peak LCU.

摘要

目的

本研究比较了使用多波和单峰发光二极管光固化机(LCU)时,不同厚度的大块充填树脂基复合材料(RBC)的透光率。同时还评估了其对表面硬度的影响。

方法

测试了五种大块充填RBC。使用多波(Bluephase Style)或单峰(Elipar S10)LCU从顶部对厚度为1、2、4或6毫米的样本(n = 5)进行10秒的光聚合,同时用分光光度计实时监测到达样本底部的透射辐照度和辐射暴露量。在37°C的蒸馏水中储存24小时后,测量样本顶部和底部的维氏显微硬度(VH)。使用多因素方差分析、Tukey事后检验和多变量分析(α = 0.05)对结果进行分析。

结果

对于每种厚度的五种大块充填RBC,LCU的选择对透过的光总量没有显著影响。使用两种LCU测试的所有RBC,随着厚度增加,透过的光量均显著减少(p < 0.001)。LCU对VH的影响最小(η = 0.010)。当使用任何一种LCU时,SDR、X-tra Fill和Filtek Bulk Restorative厚度为1、2和4毫米的样本VH比率约为80%。

结论

使用任何一种LCU时,不同厚度的五种大块充填RBC的透光总量相似。与单峰LCU相比,本研究中使用的多波LCU并未增强测试的大块充填RBC的聚合。

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