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评估矿化三氧化物凝聚体密封剂的尺寸变化。

Evaluation of the dimensional changes of mineral trioxide aggregate sealer.

机构信息

Department of Building and Civil Engineering, Faculty for Built Environment, University of Malta, Msida, Malta.

出版信息

Int Endod J. 2011 May;44(5):416-24. doi: 10.1111/j.1365-2591.2010.01844.x. Epub 2011 Jan 24.

Abstract

AIM

To evaluate the setting time, early age restrained dimensional stability, fluid uptake, microstructure and porosity of a root canal sealer based on mineral trioxide aggregate (MTAS).

METHODOLOGY

The MTAS, mineral trioxide aggregate (MTA) and a commercially available sealer pulp canal sealer (PCS) were investigated. The setting time of the materials was determined according to ISO 6876; 2002. The dimensional change in the vertical direction was measured over a period of 7 days from setting time using a linear variable differential transducer. The test samples were restrained in lateral directions by the metal mould. The fluid uptake of the cements was evaluated in Hank's balanced salt solution (HBSS), and their porosity was investigated using light optical microscopy.

RESULTS

The addition of a water-soluble polymer to MTA reduced its setting time but PCS displayed the shortest setting time (P < 0.05). The dimensional stability of the materials was not affected by the test environmental conditions (P > 0.05). PCS exhibited a much higher degree of shrinkage than MTA (P = 0.997, 0.640, 0.449, 0.191) and MTAS (P = 0.952, 0.523, 0.380, 0.149) at 3 h and 1, 3, 7 days, respectively, when allowed to set at 100% humidity. An increase in weight and expansion was recorded for MTA when immersed in HBSS. Microscope investigation of test specimens revealed the highest degree of porosity in MTA followed by MTAS and PCS.

CONCLUSIONS

The novel sealer based on MTA demonstrated adequate setting time and was dimensionally stable. It has the potential to be used as root canal sealer cement in clinical practice.

摘要

目的

评价一种基于矿化三氧化物凝聚体(MTA)的根管封闭剂的凝固时间、早期约束尺寸稳定性、吸水率、微观结构和孔隙率。

方法

研究了矿化三氧化物凝聚体(MTA)、矿物三氧化物聚合体(MTA)和一种市售的根管封闭剂牙髓腔封闭剂(PCS)。根据 ISO 6876:2002 测定材料的凝固时间;从凝固时间开始,使用线性可变差动传感器在 7 天内测量垂直方向的尺寸变化。将测试样品用金属模具约束在侧向。在 Hank's 平衡盐溶液(HBSS)中评估水泥的吸水率,并使用光学显微镜研究其孔隙率。

结果

在 MTA 中添加水溶性聚合物可降低其凝固时间,但 PCS 的凝固时间最短(P<0.05)。测试环境条件对材料的尺寸稳定性没有影响(P>0.05)。在 100%湿度下,允许凝固 3 小时和 1、3、7 天时,PCS 的收缩率明显高于 MTA(P=0.997、0.640、0.449、0.191)和 MTAS(P=0.952、0.523、0.380、0.149)。当 MTA 浸入 HBSS 中时,记录到重量增加和膨胀。对测试样本进行显微镜检查发现,MTA 的孔隙率最高,其次是 MTAS 和 PCS。

结论

基于 MTA 的新型封闭剂具有足够的凝固时间和尺寸稳定性。它有可能在临床实践中用作根管封闭剂水泥。

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