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首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Characterization of the mineral trioxide aggregate-resin modified glass ionomer cement interface in different setting conditions
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Characterization of the mineral trioxide aggregate-resin modified glass ionomer cement interface in different setting conditions

机译:不同设定条件下矿物三氧化物骨料-树脂改性的玻璃离聚物水泥界面的表征

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Introduction: Mineral trioxide aggregate (MTA) has been used successfully for perforation repair, vital pulpotomies, and direct pulp capping. However, little is known about the interactions between MTA and glass ionomer cement (GIC) in final restorations. In this study, 2 null hypotheses were tested: (1) GIC placement time does not affect the MTA-GIC structural interface and hardness and (2) moisture does not affect the MTA-GIC structural interface and hardness. Methods: Fifty cylinders were half filled with MTA and divided into 5 groups. The other half was filled with resin-modified GIC either immediately after MTA placement or after 1 or 7 days of temporization in the presence or absence of a wet cotton pellet. The specimens were then sectioned, carbon coated, and examined using a scanning electron microscope and an electron probe microanalyzer (SEM-EPMA) for interfacial adaptation, gap formation, and elemental analysis. The Vickers hardness numbers of the interfacial MTA were recorded 24 hours after GIC placement and 8 days after MTA placement and analyzed using the analysis of variance test. Results: Hardness testing 24 hours after GIC placement revealed a significant increase in hardness with an increase of temporization time but not with a change of moisture conditions (P <.05). Hardness testing 8 days after MTA placement indicated no significant differences among groups. SEM-EPMA showed interfacial adaptation to improve with temporization time and moisture. Observed changes were limited to the outermost layer of MTA. The 2 null hypotheses were not rejected. Conclusions: GIC can be applied over freshly mixed MTA with minimal effects on the MTA, which seemed to decrease with time.
机译:简介:三氧化二矿骨料(MTA)已成功用于穿孔修复,重要切髓术和直接牙髓覆盖术。但是,关于最终修复中MTA与玻璃离聚物水泥(GIC)之间的相互作用了解甚少。在这项研究中,测试了2个无效假设:(1)GIC放置时间不影响MTA-GIC结构界面和硬度,以及(2)水分不影响MTA-GIC结构界面和硬度。方法:将50只气瓶用MTA填充一半,分为5组。在MTA放置后立即或在存在或不存在湿棉粒的情况下进行临时化1或7天后,用树脂改性的GIC填充另一半。然后将样品切片,涂碳并使用扫描电子显微镜和电子探针微分析仪(SEM-EPMA)进行界面适应性分析,间隙形成和元素分析。在GIC放置后24小时和MTA放置后8天记录界面MTA的维氏硬度值,并使用方差分析进行分析。结果:在放置GIC后24小时进行的硬度测试显示,硬度随回火时间的增加而显着增加,但不随湿度条件的变化而增加(P <.05)。 MTA放置后8天的硬度测试表明各组之间无显着差异。 SEM-EPMA显示界面适应性随时间和水分的增加而改善。观察到的变化仅限于MTA的最外层。这两个无效假设未被拒绝。结论:GIC可以应用在新鲜混合的MTA上,对MTA的影响最小,并且随着时间的推移似乎会降低。

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