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评价一种根管 Portland 水泥的物理性能,该水泥中加入了替代的阻射剂,用作根尖封闭材料。

Evaluation of the physical properties of an endodontic Portland cement incorporating alternative radiopacifiers used as root-end filling material.

机构信息

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

出版信息

Int Endod J. 2010 Mar;43(3):231-40. doi: 10.1111/j.1365-2591.2009.01670.x.

Abstract

AIM

To investigate the physical and chemical properties of Portland cement (PC) loaded with alternative radiopacifying materials for use as root-end filling materials in a mineral trioxide aggregate (MTA)-like system.

METHODOLOGY

Portland cement loaded with barium sulphate, gold and silver/tin alloy was mixed with water, and the physical and chemical properties of the hydrated cements were evaluated. MTA and intermediate restorative material (IRM) were used as controls. The radiopacity was compared to the equivalent thickness of aluminium, and the setting time of the cements was assessed using an indentation technique. The compressive strength and the stress-strain relationship were determined at 28 days. The stress-strain relationship was determined by monitoring the strain generated when the cement was subjected to compressive load. In addition, the pH was determined in water and simulated body fluid for a period of 28 days.

RESULTS

The radiopacity of the cements using alternative radiopacifiers was comparable to MTA (P > 0.05). IRM demonstrated a higher radiopacity than all the materials tested (P < 0.05). All the cements with the exception of IRM exhibited an alkaline pH and had an extended setting time when compared to IRM. MTA had a longer setting time than the PC (P < 0.001), and its setting time was similar to the gold-loaded cement (P = 0.159). The addition of a radiopacifier retarded the setting time (P < 0.001) but did not have any effect on the compressive strength as all loaded cements had comparable strength to PC (P > 0.05). IRM was the weakest cement tested (P < 0.001). The cement loaded with gold radiopacifier had comparable strength to MTA (P = 1). The stress-strain relationship was linear for all the cements with IRM generating more strain on loading.

CONCLUSIONS

Within the parameters set in this study, bismuth oxide in MTA can be replaced by gold or silver/tin alloy. The physical, mechanical and chemical properties of the cement replaced with alternative radiopacifiers were similar and comparable to ProRoot MTA.

摘要

目的

研究载有替代放射增感材料的波特兰水泥(PC)的物理和化学性质,以用作矿物三氧化物聚合体(MTA)类似系统中的根管充填材料。

方法

将载有硫酸钡、金和银/锡合金的波特兰水泥与水混合,并评估水合水泥的物理和化学性质。MTA 和中间修复材料(IRM)用作对照。比较放射密度与铝的等效厚度,并使用压痕技术评估水泥的凝固时间。在 28 天时测定抗压强度和应力-应变关系。通过监测水泥在受压时产生的应变来确定应力-应变关系。此外,在 28 天内测定水和模拟体液中的 pH 值。

结果

使用替代放射增感剂的水泥的放射密度与 MTA 相当(P > 0.05)。IRM 的放射密度高于所有测试材料(P < 0.05)。除 IRM 外,所有水泥均呈碱性 pH 值,与 IRM 相比,凝固时间延长。MTA 的凝固时间长于 PC(P < 0.001),其凝固时间与载金水泥相似(P = 0.159)。添加放射增感剂会延迟凝固时间(P < 0.001),但对抗压强度没有影响,因为所有载水泥的强度与 PC 相当(P > 0.05)。IRM 是测试中强度最弱的水泥(P < 0.001)。载金放射增感剂的水泥与 MTA 的强度相当(P = 1)。所有水泥的应力-应变关系均呈线性,IRM 在加载时产生更多应变。

结论

在本研究设定的参数范围内,MTA 中的氧化铋可以被金或银/锡合金取代。替代放射增感剂的水泥的物理、机械和化学性质与 ProRoot MTA 相似且相当。

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