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器械顺应性和样本厚度对光固化复合材料聚合收缩应力测量的影响。

Influence of instrument compliance and specimen thickness on the polymerization shrinkage stress measurement of light-cured composites.

作者信息

Lee Sue Hyun, Chang Juhea, Ferracane Jack, Lee In Bog

机构信息

Department of Conservative Dentistry and Dental Research Institute, School of Dentistry, Seoul National University, 28-2 Yeongeon-Dong, Jongro-Gu, Seoul 110-749, South Korea.

出版信息

Dent Mater. 2007 Sep;23(9):1093-100. doi: 10.1016/j.dental.2006.10.003. Epub 2006 Nov 16.

Abstract

OBJECTIVES

The aim of our study was to investigate the effects of instrument compliance and specimen geometry on the polymerization shrinkage stress measurements of composites.

METHODS

A custom designed stress-strain analyzer was made using a linear variable differential transformer probe and a cantilever load cell. A sandblasted glass rod was fixed at the free end of the load cell, and another glass rod was located on a base plate. A composite was placed between the two rods and light cured. The end displacement of the load cell during polymerization was recorded for 10 min. A flowable (Filtek Flow), a universal hybrid (Z100), and a packable (P60) composite were studied. To investigate the effect of specimen geometry and instrument compliance, specimen thickness was varied between 0.5, 1.0, and 2.0 mm, and three load cells with maximum capacities of 20, 100, and 500kgf were used. Ten maxillary premolars were prepared with two sizes of MOD cavities; the bucco-lingual widths and depths of the cavities were 1.5 mm x 2 mm and 3 mm x 2 mm, and the cusp compliance and deflection were measured before and during composite polymerization.

RESULTS

The measured polymerization stress decreased in the order of Filtek Flow, Z100, and P60 for all measurement conditions. As the specimen thickness was increased, the shrinkage stress per unit thickness (mm) decreased. The measured stress decreased with increasing instrument compliance. The cusp compliance (3.32 microm/N) of the 3 mm x 2 mm cavities was similar to that of instrument with a 20 kgf load cell (3.34 microm/N).

SIGNIFICANCE

For determining the most clinically relevant values for shrinkage stress of dental composites, the instrument compliance should closely match that of the tooth walls in the cavity geometry to be tested.

摘要

目的

本研究旨在探讨器械顺应性和样本几何形状对复合材料聚合收缩应力测量的影响。

方法

使用线性可变差动变压器探头和悬臂式称重传感器制作了一台定制设计的应力应变分析仪。将一根喷砂玻璃棒固定在称重传感器的自由端,另一根玻璃棒放置在基板上。在两根玻璃棒之间放置复合材料并进行光固化。记录聚合过程中称重传感器在10分钟内的端部位移。研究了一种可流动复合材料(Filtek Flow)、一种通用混合型复合材料(Z100)和一种可压实复合材料(P60)。为了研究样本几何形状和器械顺应性的影响,样本厚度在0.5、1.0和2.0毫米之间变化,并使用了三个最大容量分别为20、100和500千克力的称重传感器。制备了十颗上颌前磨牙,有两种尺寸的MOD洞型;洞型的颊舌宽度和深度分别为1.5毫米×2毫米和3毫米×2毫米,并在复合材料聚合之前和期间测量牙尖顺应性和挠度。

结果

在所有测量条件下,测得的聚合应力按Filtek Flow、Z100和P60的顺序降低。随着样本厚度增加,单位厚度(毫米)的收缩应力降低。测得的应力随着器械顺应性的增加而降低。3毫米×2毫米洞型的牙尖顺应性(3.32微米/牛顿)与使用20千克力称重传感器的器械的顺应性(3.34微米/牛顿)相似。

意义

为了确定牙科复合材料收缩应力的最具临床相关性的值,器械顺应性应与待测试洞型几何形状中的牙壁顺应性紧密匹配。

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