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Pre-ctlnical Analysis of an Acetabular Cup with Improved in-vivo Stability and Integrity

机译:髋臼杯的预态性分析,具有改进的体内稳定性和完整性

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A finite element analysis study was conducted to produce a ceramic bearing modular acetabular cup prosthesis design with reduced wall thickness, allowing a larger diameter bearing to be used reducing dislocation risk but without compromising bone conservation. In addition to geometric design, pre-assembly of the modular components was considered, so that the integrity of the cup in-vivo would be maintained, potentially reducing fracture risk and the incidence of squeaking. The result was a design with 4mm larger bearing diameter but 20% lower peak ceramic stress than current technology, and an assembly technique predicted to maintain implant integrity in the presence of dimensional variation from manufacturing. Such a design would represent an improvement in stability and integrity in-vivo over current technology, and a necessary improvement in prosthesis design.
机译:进行有限元分析研究以产生具有减少壁厚的陶瓷轴承模块化髋臼杯假体设计,允许更大的直径轴承减少脱位风险,但不影响骨骼保护。除了几何设计之外,考虑了模块化部件的预组装,因此将保持杯子内的杯子的完整性,可能降低裂缝风险和吱吱声的发生率。结果是具有4mm较大轴承直径但比电流技术高20%的轴承直径,并且预测组装技术在尺寸变化的情况下保持植入性完整性。这种设计将代表在目前技术上的稳定性和完整性的改善,以及假体设计的必要改进。

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