首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Effect of hygroscopic expansion on the push-out resistance of glass ionomer-based cements used for the luting of glass fiber posts.
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Effect of hygroscopic expansion on the push-out resistance of glass ionomer-based cements used for the luting of glass fiber posts.

机译:吸湿膨胀对用于玻璃纤维杆的胶合的玻璃离聚物基水泥的推出阻力的影响。

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摘要

This study examined the contribution of hygroscopic expansion of glass-ionomer (GIC) and resin modified glass-ionomer (RMGIC) luting cements to the push-out resistance of fiber posts. Glass fiber posts were luted to post spaces using different cements. Experimental specimens were stored in water, while control specimens were desiccated and stored in mineral oil to eliminate water from intraradicular dentinal tubules and/or the external environment that could have contributed to hygroscopic expansion of the cements. Thin slice push-out tests revealed no difference in retention strengths of resin composite cements that were stored in water or oil. Conversely, GIC and RMGIC cements exhibited increased retention strengths after water sorption. As unfavorable cavity geometry is taxing to dentin bond integrity in root canals, a strategy that relies on increasing the frictional resistance to post dislodgement via delayed hygroscopic expansion of glass-ionomer based materials may be a more pragmatic approach to fiber post retention.
机译:这项研究检查了玻璃离聚物(GIC)和树脂改性玻璃离聚物(RMGIC)吸水水泥的吸湿膨胀对纤维桩抗拔出性的贡献。使用不同的水泥将玻璃纤维桩引诱到桩空间中。实验样品被保存在水中,而对照样品被干燥并保存在矿物油中,以消除根管内牙本质小管和/或外部环境中的水分,这些水分可能导致水泥的吸湿性膨胀。薄片推出测试表明,储存在水或油中的树脂复合水泥的固位强度没有差异。相反,GIC和RMGIC水泥在吸水后表现出更高的保留强度。由于不利的空腔几何形状增加了根管中牙本质键的完整性,因此依靠延迟的基于玻璃离聚物的材料的吸湿膨胀来增加对牙后移的摩擦阻力的策略可能是一种更为实用的纤维后牙固位方法。

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