首页> 外文期刊>International endodontic journal >A comparison of two gutta-percha master points consisting of different phases in filling of artificial lateral canals and depressions in the apical region of root canals when using a warm vertical compaction technique.
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A comparison of two gutta-percha master points consisting of different phases in filling of artificial lateral canals and depressions in the apical region of root canals when using a warm vertical compaction technique.

机译:当使用热垂直压实技术时,比较两个不同的牙胶主要点,这些主要点由不同的阶段组成,分别填充人工侧管和根管根尖的凹陷。

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AIM: Two types of gutta-percha master points consisting of different phases of the material were compared during the filling of lateral canals and depressions in the apical region of root canals when using warm vertical compaction (WVC). METHODOLOGY: Two split-tooth models were constructed one with lateral canals 1, 2 and 3 mm from the working length (WL) and another with depressions 1 and 3 mm from the WL. For each model, canal filling was performed with either alpha-phase or beta-phase gutta-percha. The gutta-percha was condensed with a System B plugger placed 7, 5 or 3 mm from the WL. The mean depth of gutta-percha penetration into the lateral canals and the percentage of depression area covered by gutta-percha were measured. A two-factor analysis of variance and a Student-Newman-Keuls test (P < 0.05) were used to compare the two gutta-percha and three plugger insertion depths. RESULTS: At the 1-2 mm apical levels, alpha-phase gutta-percha and deeper plugger depth elicited better flow into canals and depressions (P < 0.01). At the 3 mm apical level, the alpha-phase and beta-phase gutta-percha penetrated to the same extent with 3- and 5-mm plugger insertions (P > 0.05); however, with the 7-mm plugger insertion, the alpha-phase gutta-percha flowed significantly more deeply than the beta-phase gutta-percha (P < 0.01). At the 2-3 mm apical levels, the 3 and 5 mm plugger depths elicited similar flow (P > 0.05); both elicited significantly better flow than the 7 mm plugger depth (P < 0.01). CONCLUSION: The alpha-phase gutta-percha with deep plugger insertion during warm vertical compaction using a System B heat source moved singificantly more into lateral canals and depressions than the beta-phase gutta-percha.
机译:目的:在使用温垂直压实法(WVC)时,在充填根管和根管根尖的根部凹陷期间,比较了由两种材料的不同相组成的两种胶状胶点。方法:构造了两个裂齿模型,一个具有距工作长度(WL)1、2和3 mm的侧管,另一个具有距WL 1和3 mm的凹部的模型。对于每个模型,均使用α相或β相牙胶进行运河充填。用距WL 7、5或3 mm的System B塞子凝结牙胶。测量平均牙龈渗透到侧管的深度和牙龈覆盖的凹陷区域的百分比。使用方差的两因素分析和Student-Newman-Keuls检验(P <0.05)来比较两个gutta-percha和三个plugger插入深度。结果:在1-2 mm的根尖水平,α相牙胶和较深的堵塞物深度会导致更好地流入运河和凹陷(P <0.01)。在3 mm的根尖水平,α相和β相的牙胶渗透到3毫米和5毫米插入器插入的程度相同(P> 0.05)。但是,插入7毫米插入器后,α相牙胶的流动比β相牙胶的流动要深得多(P <0.01)。在2-3毫米的顶端水平,3毫米和5毫米的塞子深度引起相似的流动(P> 0.05)。两者均引起了比7mm堵塞深度明显更好的流动(P <0.01)。结论:使用系统B热源在垂直压实过程中,深相填塞剂插入的α相牙胶比β相牙胶更显着地移入了侧管和凹陷。

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