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首页> 外文期刊>Brazilian Journal of Oral Sciences >In vitro study of marginal, internal and proximal adaptation of implant-supported single-crown CAD/CAM restorations
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In vitro study of marginal, internal and proximal adaptation of implant-supported single-crown CAD/CAM restorations

机译:植入物支撑的单冠CAD / CAM修复体的边缘,内部和近端适应体外研究

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Aim: This study evaluated the precision of a CAD/CAM system by measuring marginal, internal and proximal fits in implantsupported single-crown restorations. Methods: Ten models of the upper arch were made in which implants replaced the upper left premolars. For fabrication of the zirconia infrastructures, titanium bases (TiBase) were coded and scanned using a scan body. A second digital impression was made for the fabrication of prostheses. Silicone impression material was used to determine the internal clearance between the TiBase and infrastructure and between the infrastructure and crown, whose thickness was measured at three points [P1 (cervical), P2 (middle) and P3 (occlusal)] with a stereoscopic microscope at 70x and 100x magnification. One-way ANOVA for repeated measures and the Student t-test were used for the analysis of internal and marginal adaptation. Proximal contacts were analyzed qualitatively. Results: There was no significant difference between the teeth evaluated (Student’s t-test; p0.05) or between the corresponding points evaluated in either tooth (one-way ANOVA; p0.05). Analysis of the internal clearance between the infrastructure and crown demonstrated that all points were significantly different compared to the reference standardized at 100 μm (Student’s t-test p0.0001). There was no significant difference between P1 and P2, with the thickness at these two points being lower than that obtained at P3 (one-way ANOVA, p0.05). The proximal contacts did not coincide with the quality defined by the device. Conclusion: The system tested was unable to produce implantsupported single-crown ceramic restorations with marginal, internal and proximal fits matching the digital workflow, with the inferior fits requiring adjustment prior to cementation.
机译:目的:本研究通过测量聚合物支出的单冠修复件中的边际,内部和近侧拟合来评估CAD / CAM系统的精度。方法:制造了十种上拱的型号,其中植入物更换了左上前的前磨牙。为了制造氧化锆基础设施,使用扫描体进行编码并扫描钛基碱(Tibase)。制造假体的第二个数字印象是制造的。硅胶印模材料用于确定沟槽和基础设施之间的内部间隙,以及基础设施和冠之间,其厚度在三个点[P1(宫颈),P2(中间)和p3(咬合)]中测量,其在立体显微镜下倍率为70x和100倍。用于重复措施的单向ANOVA和学生T检验用于分析内部和边际适应。定性分析近端触点。结果:评估牙齿之间没有显着差异(学生的T检验; P> 0.05),或在任何牙齿(单向ANOVA; P> 0.05)中评估的相应点之间。基础设施和冠之间的内部间隙分析表明,与100μM标准化的参考相比,所有点与标准化的引用相比显着不同(学生的T-Test P <0.0001)。 P1和P2之间没有显着差异,在这两个点处的厚度低于P3(单向ANOVA,P <0.05)的厚度。近端触点与设备定义的质量不一致。结论:系统测试的系统无法生产带有边缘,内部和近端的单冠陶瓷修复物,匹配数字工作流程,劣质拟合需要在胶泥之前进行调整。

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