首页> 外文期刊>Contemporary Clinical Dentistry >Comparison of push-out bond strength of furcation perforation repair materials – Glass ionomer cement Type II, hydroxyapatite, mineral trioxide aggregate, and biodentine: An in vitro study
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Comparison of push-out bond strength of furcation perforation repair materials – Glass ionomer cement Type II, hydroxyapatite, mineral trioxide aggregate, and biodentine: An in vitro study

机译:分叉穿孔修复材料的推挤粘结强度比较– II型玻璃离聚物水泥,羟基磷灰石,三氧化二矿物骨料和生物素:体外研究

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Background: A furcation perforation is mid-curvature opening into periodontal ligament space which is a worst possible outcome in root canal treatment. Perforations should immediately be repaired with a biocompatible material to seal the communication between perforation site and gingival sulcus. Aim: The aim of this study was to evaluate the push-out bond strength of glass ionomer cement, hydroxyapatite, mineral trioxide aggregate, and biodentine (BD) when used in repairing furcal perforations with and without blood contamination in permanent molars. Materials and Methods: A total of 120 human extracted molars were collected and divided on the basis of perforation repair materials and blood contamination status (n = 15). All the materials were subjected to universal testing machine to a load cell from 0 N to 100 KN at a crosshead speed of 1 mm/min. Statistical Analysis: The data obtained were subjected to statistical analysis using SPSS version 20.0. Results and Conclusion: The push-out bond strength was maximum in BD contaminated with blood and least for the hydroxyapatite contaminated with blood. A significant difference was found between all the perforation repair materials.
机译:背景:分叉穿孔是曲率中部进入牙周膜间隙的开口,这在根管治疗中可能是最糟糕的结果。穿孔应立即用生物相容性材料修复,以密封穿孔部位和牙龈沟之间的连通。目的:本研究的目的是评估玻璃离子聚合物水泥,羟基磷灰石,三氧化二矿物骨料和生物素(BD)在修复永久性磨牙中有无血液污染的牙叉穿孔时的抗脱粘结强度。材料和方法:总共收集了120颗人类提取的臼齿,并根据穿孔修复材料和血液污染状况进行了划分(n = 15)。所有材料均以1 mm / min的十字头速度在0 N至100 KN的称重传感器上经受通用测试。统计分析:使用SPSS 20.0版对获得的数据进行统计分析。结果与结论:被血液污染的BD的推出力最大,而被血液污染的羟磷灰石的推出力最弱。在所有穿孔修复材料之间发现了显着差异。

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