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首页> 外文期刊>The Journal of Prosthetic Dentistry >Effect of modifying the screw access channels of zirconia implant abutment on the cement flow pattern and retention of zirconia restorations
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Effect of modifying the screw access channels of zirconia implant abutment on the cement flow pattern and retention of zirconia restorations

机译:修改氧化锆种植体基台的螺钉通道对水泥流型和氧化锆修复体固位的影响

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Statement of problem The effect of managing the screw access channels of zirconia implant abutments in the esthetic zone has not been extensively evaluated. Purpose The purpose of this study was to determine the effect of an insert placed within the screw access channel of an anterior zirconia implant abutment on the amount of cement retained within the restoration-abutment system and on the dislodging force. Material and methods Thirty-six paired zirconia abutments and restorations were fabricated by computer-aided design and computer-aided manufacturing and were divided into 3 groups: open abutment, with the screw access channel unfilled; closed abutment, with the screw access channel sealed; and insert abutment, with a thin, tubular metal insert projection continuous with the screw head and placed into the abutment screw access channel. The restorations were cemented to the abutments with preweighed eugenol-free zinc oxide cement (TempBond NE). Excess cement was removed, and the weight of the cement that remained in the restoration-abutment system was measured. Vertical tensile dislodging forces were recorded at a crosshead speed of 5 mm/min after incubation in a 37°C water bath for 24 hours. The specimens were examined for the cement flow pattern into the screw access channel after dislodgement. Data were analyzed with ANOVA, followed by multiple comparisons by using the Tukey honestly significant difference test (α=.05). Results The mean (standard deviation) of retentive force values ranged from 108.1 ±29.9 N to 148.3 ±21.0 N. The retentive force values differed significantly between the insert abutment and both the open abutment (P<.05) and closed abutment groups (P<.01). Distinct patterns of cement failure were noted. The weight of the cement that remained in the system differed significantly, with both open abutment and insert abutment being greater than closed abutment (P<.05). Conclusion Modifying the internal configuration of the screw access channel of an esthetic zirconia implant abutment with a metal insert significantly affected both the cement retained within the abutment itself and the retention capabilities of the zirconia restoration cemented with TempBond NE cement.
机译:问题陈述在美学区域中管理氧化锆植入物基台的螺钉通道的效果尚未得到广泛评估。目的这项研究的目的是确定放置在前氧化锆种植体基台的螺钉进入通道内的插入物对修复基台系统中保留的骨水泥量和移动力的影响。材料和方法通过计算机辅助设计和计算机辅助制造方法制造了36对氧化锆基台和修复体,分为三组:开放式基台,未装满螺钉通道;第二组。封闭式基台,螺丝通道密封。并插入一个基台,带有一个薄的管状金属插入突出物,该突出物与螺钉头连续并放置在基台螺钉通道中。用预先称重的无丁香酚的氧化锌水泥(TempBond NE)将修复体粘结到基台上。去除多余的水泥,并测量残留在修复基台系统中的水泥的重量。在37°C水浴中孵育24小时后,以5 mm / min的十字头速度记录垂直拉伸力。移出后,检查样品进入水泥通道的水泥流型。使用ANOVA分析数据,然后使用Tukey诚实显着差异检验(α= .05)进行多次比较。结果保持力值的平均值(标准偏差)在108.1±29.9 N到148.3±21.0 N之间。插入式基台与开放式基台(P <.05)和封闭式基台组(P <.01)。注意到水泥破坏的不同模式。保留在系统中的水泥的重量差异显着,开放式基台和插入式基台均大于封闭式基台(P <.05)。结论用金属嵌件修改美观的氧化锆植入物基台的螺钉通道的内部配置会显着影响固位在基台本身内的水泥以及用TempBond NE水泥粘结的氧化锆修复体的固位能力。

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