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Precision of fit and retention force of cast non-precious-crowns on standard titanium implant-abutment with different design and height

机译:不同设计和高度的标准钛种植体基台上铸造非贵族冠的配合精度和固位力

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Objective: The cost-effectiveness of cast nonprecious frameworks has increased their prevalence in cemented implant crowns. The purpose of this study was to assess the effect of the design and height of the retentive component of a standard titanium implant abutment on the fit, possible horizontal rotation and retention forces of cast nonprecious alloy crowns prior to cementation. Materials and Methods: Two abutment designs were examined: Type A with a 6° taper and 8 antirotation planes (Straumann Tissue-Level RN) and Type B with a 7.5° taper and 1 antirotation plane (SICace implant). Both types were analyzed using 60 crowns: 20 with a full abutment height (6 mm), 20 with a medium abutment height (4 mm), and 20 with a minimal (2.5 mm) abutment height. The marginal and internal fit and the degree of possible rotation were evaluated by using polyvinylsiloxane impressions under a light microscope (magnification of ×50). To measure the retention force, a custom force-measuring device was employed. Statistical analysis: one-sided Wilcoxon rank-sum tests with Bonferroni-Holm corrections, Fisher′s exact tests, and Spearman's rank correlation coefficient. Results: Type A exhibited increased marginal gaps (primary end-point: 55 ± 20 μm vs. 138 ± 59 μm, P < 0.001) but less rotation (P < 0.001) than Type B. The internal fit was also better for Type A than for Type B (P < 0.001). The retention force of Type A (2.49 ± 3.2 N) was higher (P = 0.019) than that of Type B (1.27 ± 0.84 N). Reduction in abutment height did not affect the variables observed. Conclusion: Less-tapered abutments with more antirotation planes provide an increase in the retention force, which confines the horizontal rotation but widens the marginal gaps of the crowns. Thus, casting of nonprecious crowns with Type A abutments may result in clinically unfavorable marginal gaps.
机译:目的:铸造非贵重框架的成本效益提高了其在骨水泥种植体冠中的患病率。这项研究的目的是评估标准钛种植体基台的固位部件的设计和高度对固结之前铸造的非贵金属牙冠的配合,可能的水平旋转和固位力的影响。材料和方法:检查了两种基台设计:具有6°锥度和8个抗旋转平面的A型(Straumann组织水平RN)和具有7.5°锥度和1个抗旋转平面的B型(SICace植入物)。两种类型的牙冠均使用60个牙冠进行了分析:20个牙冠的全牙高(6 mm),20个牙冠的中高牙(4 mm)和20个牙冠的最小牙高(2.5 mm)。通过在光学显微镜下(放大倍数为50)使用聚乙烯基硅氧烷压痕评估边缘和内部的贴合度以及可能的旋转度。为了测量保持力,使用了定制的测力装置。统计分析:带Bonferroni-Holm校正的单面Wilcoxon秩和检验,Fisher精确检验和Spearman秩相关系数。结果:A型的边缘间隙增加(主要终点:55±20μmvs. 138±59μm,P <0.001),但旋转度(P <0.001)小于B型。内部拟合也比A型更好比B型(P <0.001)。 A型的保持力(2.49±3.2 N)高于B型的保持力(1.27±0.84 N)(P = 0.019)。减小基台高度不会影响观察到的变量。结论:锥度较小的基台具有更多的防旋转平面,可增加固位力,从而限制了水平旋转,但加宽了牙冠的边缘间隙。因此,用A型基台铸造非贵重的牙冠可能会导致临床上不利的边缘间隙。

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