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Effect of cantilever length and framework alloy on the stress distribution of mandibular-cantilevered implant-supported prostheses.

机译:悬臂长度和骨架合金对下颌悬臂植入物支撑假体应力分布的影响。

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OBJECTIVES: The purpose of this in vitro study was to analyze the stress distribution on components of a mandibular-cantilevered implant-supported prosthesis with frameworks cast in cobalt-chromium (Co-Cr) or palladium-silver (Pd-Ag) alloys, according to the cantilever length. MATERIAL AND METHODS: Frameworks were fabricated on (Co-Cr) and (Pd-Ag) alloys and screwed into standard abutments positioned on a master-cast containing five implant replicas. Two linear strain gauges were fixed on the mesial and distal aspects of each abutment to capture deformation. A vertical static load of 100 N was applied to the cantilever arm at the distances of 10, 15, and 20 mm from the center of the distal abutment and the absolute values of specific deformation were recorded. RESULTS: Different patterns of abutment deformation were observed according to the framework alloy. The Co-Cr alloy framework resulted in higher levels of abutment deformation than the silver-palladium alloy framework. Abutment deformation was higher with longer cantilever extensions. CONCLUSION: Physical properties of the alloys used for framework interfere with abutment deformations patterns. Excessively long cantilever extensions must be avoided.
机译:目的:这项体外研究的目的是分析在钴铬(Co-Cr)或钯银(Pd-Ag)合金铸造的框架下,下颌悬臂植入物支撑假体组件的应力分布。到悬臂长度。材料和方法:框架是在(Co-Cr)和(Pd-Ag)合金上制造的,并旋入标准基台上,该基台位于包含五个植入物复制品的主铸件上。两个线性应变仪固定在每个基台的内侧和远端,以捕获变形。在距远端基台中心10毫米,15毫米和20毫米的距离处,向悬臂施加100 N的垂直静载荷,并记录特定变形的绝对值。结果:根据骨架合金观察到不同的基台变形模式。 Co-Cr合金框架比银-钯合金框架产生更高水平的基台变形。悬臂延伸越长,基台变形越高。结论:用于框架的合金的物理性能会干扰基台变形模式。必须避免过长的悬臂延伸。

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