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可流动材料对采用发光二极管和石英卤素灯固化灯的纳米填充和混合型Ⅱ类复合树脂修复体微渗漏的影响

Influence of flowable materials on microleakage of nanofilled and hybrid Class II composite restorations with LED and QTH LCUs.

作者信息

Sadeghi Mostafa

机构信息

Department of Restorative Dentistry, Dental School, Rafsanjan University, Rafsanjan, Iran.

出版信息

Indian J Dent Res. 2009 Apr-Jun;20(2):159-63. doi: 10.4103/0970-9290.52891.

Abstract

BACKGROUND

Class II composite restorations are more frequently being placed with margins apical to the cementoenamel junction (CEJ) and margins within the dentin are prone to microleakage.

AIMS

This in vitro study was used to evaluate the influence of flowable composite and flowable compomer as gingival liner on microleakage in Class II composite restorations and compare a light-emitting diode (LED) unit with a quartz tungsten halogen (QTH) unit for light-activating composite resins.

MATERIALS AND METHODS

Mesioocclusal and distoocclusal Class II cavity preparations were made in 72 sound extracted premolars. The buccolingual width was 2.5 mm and the gingival margins of all the cavities were placed 1.0 mm apical to the CEJ. The boxes were prepared 1.5 mm deep axially, making 144 slot cavities. Teeth were randomly divided into the following two groups (n = 72): (I) Universal Filtek Supreme XT; Universal Filtek Supreme XT + Flwable Filtek XT and Universal Filtek Supreme XT + Dyract Flow and (II) Filtek Z250; Filtek Z250 + Flwable Filtek XT and Filtek Z250 + Dyract Flow. Flowable materials were injected into the gingival floor of the cavity to a thickness of 1.0 mm. Each increment was cured for 20 s. One-half of the subgroups in each group were cured with QTH and the other half with LED light curing units (LCUs). After 1 week of incubation at 37 degrees C, the specimens were thermocycled (5-55 degrees C, x1500), immersed in 0.5% basic fuchsine dye for 24 h and sectioned and microleakage was evaluated at the gingival margin by two examiners using a 0-3 score scale. The data were analyzed using the Kruskal-Wallis and Mann-Whitney U tests.

RESULTS

The groups utilizing flowable liners had significantly less microleakage (P < 0.05). No significant difference was identified between Universal Filtek Supreme XT and Filtek Z250 composites with and without flowable materials. There was no significant between utilizing flowable composite or flowable compomer and between each similar subgroup when polymerized with either the LED or the QTH LCUs.

CONCLUSIONS

A layer of flowable materials at the gingival floor of Class II composite restorations may be recommended to improve the marginal seal of a restoration.

摘要

背景

II类复合树脂修复体的边缘更常置于牙骨质牙釉质界(CEJ)的根尖方,且牙本质内的边缘容易出现微渗漏。

目的

本体外研究旨在评估可流动复合树脂和可流动复合体作为龈壁衬层对II类复合树脂修复体微渗漏的影响,并比较发光二极管(LED)装置和石英钨卤素(QTH)装置对复合树脂的光固化效果。

材料与方法

在72颗完好的离体前磨牙上制备近中咬合面和远中咬合面II类洞。颊舌径为2.5mm,所有洞的龈缘均置于CEJ根尖方1.0mm处。轴向制备深度为1.5mm的盒状洞形,制成144个沟形洞。牙齿随机分为以下两组(n = 72):(I)通用Filtek Supreme XT;通用Filtek Supreme XT + 可流动Filtek XT和通用Filtek Supreme XT + Dyract Flow;(II)Filtek Z250;Filtek Z250 + 可流动Filtek XT和Filtek Z250 + Dyract Flow。将可流动材料注入洞的龈底,厚度为1.0mm。每次增量固化20秒。每组中的一半亚组用QTH固化,另一半用LED光固化装置(LCU)固化。在37℃孵育1周后,将标本进行热循环(5 - 55℃,x1500),浸入0.5%碱性品红染料中24小时,然后切片,由两名检查者使用0 - 3分评分量表在龈缘评估微渗漏情况。使用Kruskal - Wallis检验和Mann - Whitney U检验分析数据。

结果

使用可流动衬层的组微渗漏明显较少(P < 0.05)。在有无可流动材料的情况下,通用Filtek Supreme XT和Filtek Z250复合树脂之间未发现显著差异。使用可流动复合树脂或可流动复合体之间以及每组相似亚组在使用LED或QTH LCU聚合时均未发现显著差异。

结论

对于II类复合树脂修复体,建议在龈底使用一层可流动材料以改善修复体的边缘封闭性。

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