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大体积充填型 RBC 经 3s 高辐照方案处理后的短期 DC 结局多样性。

Diversity of short-term DC outcomes in bulk-fill RBCs subjected to a 3 s high-irradiance protocol.

机构信息

Department of Restorative Dental Science, College of Dentistry, King Saud University, P.O. Box 60169, Riyadh 11545, Saudi Arabia.

Department of Restorative Dental Science, College of Dentistry, King Saud University, P.O. Box 60169, Riyadh 11545, Saudi Arabia.

出版信息

Dent Mater. 2024 Nov;40(11):1872-1880. doi: 10.1016/j.dental.2024.08.008. Epub 2024 Sep 2.

Abstract

OBJECTIVES

To determine the short-term (5 min) initial effects of a high-irradiance light-curing (LC) protocol on light transmission (LT%), radiant exposure (RE) and degree of conversion (DC%) of different bulk-fill resin-based composites (RBCs).

MATERIALS AND METHODS

Six bulk-fill composites with different viscosities were investigated: OBF (One Bulk Fill, 3 M), EB (Estelite bulkfill,Tokuyama), PFill, PFlow, ECeram and EFlow (PowerFill, Poweflow, Tetric EvoCeram bulkfill, Tetric Evoflow bulkfill, Ivoclar), subjected to different LC protocols: one ultra-high-intensity (3 W/cm -3 s via PowerCure LCU) and two conventional (1.2 W/cm -10 s and 20 s via PowerCure and Elipar S10 LCUs). Specimens (n = 5) were polymerized within their molds (ϕ5 mm × 4 mm depth) to determine LT% and RE at 4 mm using a MARC-LC spectrometer. For real-time DC% measurements by FTIR, similar molds were utilized. Data were analyzed by one-way ANOVA and Tukey post-hoc tests at 5 % significance.

RESULTS

Regardless of the applied LC protocols, OBF and low-viscosity RBCs (EB, PFlow and EFlow) had the lowest and highest LT%, RE, DC% and RPmax, respectively. RE results of all RBCs were in the same sequence: Elipar-20 s > PCure-10 s > PCure-3 s. DC% of PFill and PFlow displayed no significant difference between the applied LC protocols (p > 0.05). The polymerization kinetic in all materials was well described by an exponential sum function (r varied between 0.85 and 0.98), showing a faster polymerization with the PCure-3 s protocol.

SIGNIFICANCE

The measurement of LT% and DC% at 5 min gave an insight into the developing polymerization process. The initial response of these bulk-fill composite to a high-irradiation protocol varied depending on their composition and viscosity, being faster for low viscosity materials. Nevertheless, even though multiple resin composites are designed to be efficient during photopolymerization, care should be taken when selecting materials/curing protocol.

摘要

目的

确定高辐照度光固化(LC)方案对不同块状填充型树脂基复合材料(RBC)的透光率(LT%)、辐射能(RE)和聚合度(DC%)的短期(5 分钟)初始影响。

材料与方法

研究了 6 种具有不同粘度的块状填充复合材料:OBF(One Bulk Fill,3M)、EB(Estelite bulkfill,Tokuyama)、PFill、PFlow、ECeram 和 EFlow(PowerFill、Poweflow、Tetric EvoCeram bulkfill、Tetric Evoflow bulkfill、Ivoclar),并采用了不同的 LC 方案:一种超高强度(通过 PowerCure LCU 为 3 W/cm -3 s)和两种常规强度(通过 PowerCure 和 Elipar S10 LCU 为 1.2 W/cm -10 s 和 20 s)。将试件(n=5)在其模具内聚合(φ5mm×4mm 深度),以在 4mm 处使用 MARC-LC 分光光度计测定 LT%和 RE。为了通过 FTIR 进行实时 DC%测量,使用了类似的模具。数据通过单向方差分析和 Tukey 事后检验进行分析,置信水平为 5%。

结果

无论采用何种 LC 方案,OBF 和低粘度 RBC(EB、PFlow 和 EFlow)的 LT%、RE、DC%和 RPmax 最低和最高。所有 RBC 的 RE 结果均相同:Elipar-20 s > PCure-10 s > PCure-3 s。PFill 和 PFlow 的 DC%在应用的 LC 方案之间无显著差异(p>0.05)。所有材料的聚合动力学均很好地用指数和函数描述(r 值在 0.85 到 0.98 之间),表明采用 PCure-3 s 方案时聚合更快。

意义

在 5 分钟时测量 LT%和 DC%可深入了解聚合过程的发展情况。这些块状填充复合材料对高强度辐照方案的初始反应取决于其组成和粘度,低粘度材料的反应更快。然而,即使有多种树脂复合材料在光聚合时被设计为高效,在选择材料/固化方案时仍需谨慎。

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