首页> 外文期刊>International endodontic journal >Evaluation of the radiopacity of calcium silicate cements containing different radiopacifiers.
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Evaluation of the radiopacity of calcium silicate cements containing different radiopacifiers.

机译:评估含有不同射线不透性剂的硅酸钙水泥的射线不透性。

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摘要

AIM: To identify the suitable ratio of alternative radiopacifiers to impart the necessary radiopacity to calcium silicate cements (CSC) and assess the purity of the radiopacifying agents. METHODOLOGY: Alternative radiopacifying materials for incorporation into CSC included barium sulphate, titanium oxide, zinc oxide, gold powder and silver/tin alloy. The chemical composition of the alternative radipacifying materials and bismuth oxide, which is used in mineral trioxide aggregate (MTA), was determined using energy dispersive X-ray analysis. In addition, using an aluminium step-wedge and densitometer, the radiopacity of each material was evaluated as recommended by international standards. The optical density was compared with the relevant thickness of aluminium (Al). A commercial MTA and CSC were used as controls. Statistical analysis comparing the radiodensity of the different cements to MTA was performed using anova with P = 0.05 and post hoc Tukey test. RESULTS: All percentage replacements of bismuth oxide, gold and silver-tin alloy powder, and the 25% and 30% replacements with barium sulphate and zinc oxide had radiopacities greater than 3 mm thickness of aluminium (Al) recommended by ISO 6876 (2002). The 25% replacement of cement with gold powder and 20% replacement of cement with silver/tin alloy powder exhibited radiopacity values of 8.04 mm Al and 7.52 mm Al, respectively, similar to MTA (P > 0.05). The cement replaced with 20% bismuth oxide showed a radiopacity of 6.83 mm Al, lower than MTA (P = 0.003). CONCLUSIONS: Silver/tin alloy and gold powder imparted the necessary radiopacity to a calcium silicate-based cement. Barium sulphate was also a suitable radiopacifier together with a lower concentration of silver/tin alloy and gold powder that achieved the radiodensity recommended by ISO 6876. Further research is required to investigate the broader properties of the calcium silicate-based cement with the different radiopacifiers.
机译:目的:确定合适的替代射线不透性物质的比例,以赋予硅酸钙水泥(CSC)必要的射线不透性,并评估射线不透性剂的纯度。方法:掺入CSC的其他射线不透材料包括硫酸钡,氧化钛,氧化锌,金粉和银/锡合金。使用能量色散X射线分析法确定了三氧化二矿骨料(MTA)中使用的替代辐射辐射材料和氧化铋的化学成分。另外,使用铝阶梯楔和光密度计,按照国际标准的建议评估了每种材料的射线不透性。将光密度与铝(Al)的相关厚度进行了比较。商业MTA和CSC用作对照。使用P = 0.05的方差分析和事后Tukey试验,对不同水泥与MTA的辐射密度进行了统计分析。结果:铋氧化物,金和银锡合金粉末的所有百分比替代,以及硫酸钡和氧化锌的25%和30%替代具有的射线不透性大于ISO 6876(2002)建议的铝(Al)厚度。用金粉代替25%的水泥和用银/锡合金粉代替20%的水泥,其射线不透性值分别为8.04 mm Al和7.52 mm Al,与MTA相似(P> 0.05)。用20%氧化铋代替的水泥的射线不透性为6.83 mm Al,低于MTA(P = 0.003)。结论:银/锡合金和金粉为硅酸钙基水泥提供了必要的不透射线性。硫酸钡与较低浓度的银/锡合金和金粉也达到了ISO 6876推荐的辐射密度,它也是一种合适的射线不透辐射剂。需要进一步的研究来研究使用不同射线不透辐射剂的硅酸钙基水泥的更广泛的性能。

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