首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Evaluation of the effect of intrinsic material properties and ambient conditions on the dimensional stability of white mineral trioxide aggregate and Portland cement.
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Evaluation of the effect of intrinsic material properties and ambient conditions on the dimensional stability of white mineral trioxide aggregate and Portland cement.

机译:评价内在材料性能和环境条件对白色三氧化二矿骨料和硅酸盐水泥的尺寸稳定性的影响。

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INTRODUCTION: A number of factors affect the dimensional stability of a material. These factors include curing conditions, material solubility, leaching, and time. The aim of this study was to evaluate the restrained dimensional change in the vertical direction as a function of the ambient conditions, fluid uptake, solubility, and leaching of white mineral trioxide aggregate (MTA) and Portland cement stored in Hank's balanced salt solution (HBSS) over a period of 28 days. METHODS: The dimensional change in the vertical direction over a 28-day period was determined using a linear variable differential transducer (LVDT) on laterally restrained test samples. The fluid uptake and solubility of both MTA and Portland cement was also evaluated. The leaching in water and HBSS was assessed using inductively coupled plasma. RESULTS: MTA was more soluble than Portland cement. Both materials absorbed water and physiological solution, with Portland cement displaying a lower uptake than MTA. Both cements exhibited a net expansion when in contact with a physiological solution and released high levels of calcium. MTA leached bismuth. Both calcium and bismuth ion release was higher in HBSS than in water. Phosphorus ions in HBSS were depleted when in contact with both MTA and Portland cement. CONCLUSIONS: The MTA was very susceptible to ambient conditions. The addition of bismuth oxide to MTA reduced the leaching of calcium hydroxide, increased the material solubility, and caused deterioration in material dimensional stability. Further research is necessary to establish the material porosity and its effect on the dimensional stability.
机译:简介:许多因素影响材料的尺寸稳定性。这些因素包括固化条件,材料溶解度,浸出和时间。这项研究的目的是评估在垂直方向上受约束的尺寸变化与环境条件,流体吸收,溶解度以及浸入汉克平衡盐溶液(HBSS)中的白色三氧化二骨料(MTA)和波特兰水泥的浸出的关系),为期28天。方法:使用线性可变差分传感器(LVDT)对受侧向约束的测试样品在28天的时间内确定垂直方向的尺寸变化。还评估了MTA和波特兰水泥的流体吸收率和溶解度。使用感应耦合等离子体评估了水中和HBSS中的浸出。结果:MTA比波特兰水泥更易溶。两种材料都吸收水和生理溶液,其中波特兰水泥的吸收率低于MTA。两种水泥在与生理溶液接触时均表现出净膨胀,并释放出高水平的钙。 MTA浸出铋。 HBSS中钙和铋离子的释放均高于水中。与MTA和波特兰水泥接触时,HBSS中的磷离子被耗尽。结论:MTA对环境条件非常敏感。在MTA中添加氧化铋可减少氢氧化钙的浸出,增加材料的溶解度,并导致材料尺寸稳定性下降。建立材料的孔隙率及其对尺寸稳定性的影响还需要进一步的研究。

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