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Density of Gutta Percha by Weight in Straight Root Canals and Curved Root Canals after Single Cone, Cold Lateral, and Warm Vertical Condensation

机译:单锥,冷侧向和垂直热凝结后直根管和弯曲根管中牙胶的重量密度

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摘要

The purpose of this study was to compare the density of gutta percha following three different obturation techniques using two split-tooth models. One split-tooth model was constructed with a straight rooted maxillary incisor and the other with the curved palatal root of a maxillary molar. Each tooth was obturated using single cone, cold lateral, and warm vertical obturation techniques without sealer. Each obturation technique was performed 20 times for each of the root systems. The weights of the gutta percha were recorded for each root type and obturation technique by subtracting the post-fill weight from the pre-fill weight of the two split-tooth models. Results show that in the straight canal, the three obturation techniques are significantly different (p u3c 0.0001). The warm vertical technique had the largest weight of gutta percha, followed by the single cone, and lastly by the cold lateral condensation group. In the curved canal, the three fill types were also significantly different (p u3c 0.0001). The warm vertical and single cone obturation techniques were not significantly different from one another but were significantly greater in gutta percha weight than the cold lateral technique. In conclusion, within curved canals, warm vertical and single cone techniques were more dense than cold lateral condensation. In the straight canal, the warm vertical was more dense than the single cone which was more dense than the cold lateral technique.
机译:这项研究的目的是使用两种裂齿模型比较三种不同的封闭技术后牙胶的密度。构造一个带有直根上颌切牙的裂齿模型,另一个带有上颌磨牙的弯曲pa根模型。使用单锥,冷侧向和温暖的垂直封闭技术(不使用封闭器)封闭每个牙齿。对于每个根系统,每种封闭技术均执行20次。通过从两个裂齿模型的预填充重量中减去填充后的重量,记录每种牙根类型和封闭技术的牙胶的重量。结果表明,在直管中,三种闭塞技术存在显着差异(p <0.0001)。温暖的垂直技术具有最大的牙胶重量,其次是单个锥体,最后是冷的侧向凝结组。在弯道中,三种填充类型也显着不同(p u3c 0.0001)。温暖的垂直和单圆锥封闭技术之间没有显着差异,但牙胶的重量比冷的横向技术大得多。总之,在弯曲的运河内,垂直的和单锥的温暖技术比寒冷的侧向冷凝更密实。在笔直的运河中,温暖的垂直线比单锥的密度高,后者比冷的横向技术的密度高。

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    Sparrow Gerald Clay;

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  • 年度 2008
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