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Effect of core design and veneering technique on damage and reliability of Y-TZP-supported crowns

机译:芯部设计和饰面技术对Y-TZP支撑牙冠的损伤和可靠性的影响

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Objectives. To evaluate the effect of framework design modification and veneering techniques in fatigue reliability and failure modes of veneered Yttria-Stabilized Tetragonal Zirconia Polycrystals (Y-TZP) crowns.rnMethods. A CAD-based mandibular molar crown preparation served as a master die. Y-TZP crown cores (VITA-In-Ceram-YZ, Vita-Zahnfabrik, Bad Sackingen, Germany) in conventional (0.5 mm uniform thickness) or anatomically designed fashion (cusp support) were porcelain veneered with either hand-layer (VM9) or pressed (PM9) techniques. Crowns (n = 84) were cemented on 30 days aged dentin-like composite dies with resin cement. Crowns were subjected to single load to fracture (n = 3 each group) and mouth-motion step-stress fatigue (n = 18) by sliding a WC indenter (r = 3.18 mm) 0.7 mm buccally on the inner incline surface of the mesio-lingual cusp. Stress-level curves (use level probability lognormal) and reliability (with 2-sided 90% confidence bounds, CB) for completion of a mission of 50.000 cycles at 200 N load were calculated. Fractographic analyses were performed under light-polarized and scanning electron microscopes.rnResults. Higher reliability for hand-layer veneered conventional core (0.99, CB 0.98-1) was found compared to its counterpart press-veneered (0.50 CB 0.33-65). Framework design modification significantly increased reliability for both veneering techniques (PM9 [0.98 CB 0.87-0.99], VM9 [1.00 CB 0.99-1]) and resulted in reduced veneer porcelain fracture sizes. Main fracture mode observed was veneer porcelain chipping, regardless of framework design and veneering technique.rnSignificance. Hand-layer porcelain veneered on conventional core designs presented higher reliability than press-veneered with similar core designs. Anatomic core design modification significantly increased the reliability and resulted in reduced chip size of either veneering techniques.
机译:目标。为了评估框架设计修改和饰面技术对单晶氧化钇稳定的四方氧化锆多晶(Y-TZP)冠的疲劳可靠性和破坏模式的影响。基于CAD的下颌磨牙冠制备物用作主模。常规(0.5毫米均匀厚度)或解剖设计方式(尖端支撑)的Y-TZP冠芯(VITA-In-Ceram-YZ,Vita-Zahnfabrik,德国Bad Sackingen)采用瓷贴面或任一手工层(VM9)或按下(PM9)技术。在30天老化的牙本质样复合模具上,将树突(n = 84)与树脂水泥粘合在一起。通过将WC压头(r = 3.18 mm)沿颊侧内侧倾斜面向内滑动0.7 mm,使牙冠承受一次断裂载荷(每组3个)和口动步阶疲劳(n = 18)。 -舌尖。计算了在200 N负载下完成50.000个循环的任务的应力水平曲线(使用水平概率对数法线)和可靠性(带有2面90%置信度,CB)。在偏光镜和扫描电子显微镜下进行了分形分析。与手压单板常规芯材(0.50 CB 0.33-65)相比,发现其可靠性更高(0.99,CB 0.98-1)。框架设计的修改显着提高了两种饰面技术(PM9 [0.98 CB 0.87-0.99],VM9 [1.00 CB 0.99-1])的可靠性,并降低了贴面瓷的断裂尺寸。不论框架设计和饰面技术如何,观察到的主要断裂模式均为单板瓷片崩裂。与传统磁芯设计相比,采用传统磁芯设计的手工贴面瓷板具有更高的可靠性。解剖学核心设计修改显着提高了可靠性,并导致两种贴面技术的芯片尺寸减小。

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