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首页> 外文期刊>The Journal of arthroplasty >Bilateral Patellar Component Shear Failure of Highly Cross-Linked Polyethylene Components. Report of a Case and Laboratory Analysis of Failure Mechanisms.
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Bilateral Patellar Component Shear Failure of Highly Cross-Linked Polyethylene Components. Report of a Case and Laboratory Analysis of Failure Mechanisms.

机译:高度交联的聚乙烯组件的双侧Pat骨组件剪切失败。案例报告和故障机制的实验室分析。

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摘要

A case of bilateral patellar component failure due to fatigue fracture of the all-polyethylene fixation pegs in a highly cross-linked ultra-high-molecular-weight polyethylene design is presented. To recreate this failure mode, a novel test method was developed to investigate the effects of peg orientation and cement technique on patella fatigue strength under cyclic compression and shear loading. Patellar peg orientation had a minor effect on shear strength, whereas lack of cement in the backside patellar groove had a substantial effect. The shear fatigue strength exceeded in vivo force estimates when the patellar groove was fully cemented. The test results and retrieval analysis suggest that high activity level and inadequate cement fixation of the patellar component may contribute to all-polyethylene patellar component peg fractures.
机译:提出了一种由于高度交联的超高分子量聚乙烯设计中的全聚乙烯固定钉的疲劳断裂而导致的双侧pa骨部件失效的情况。为了重现这种破坏模式,开发了一种新颖的测试方法来研究钉钉定向和水泥技术对循环压缩和剪切载荷下under骨疲劳强度的影响。 ella骨钉的定向对剪切强度的影响较小,而pa骨后侧凹槽中缺乏骨水泥的影响很大。当the骨沟被完全粘合时,剪切疲劳强度超过了体内力估计值。测试结果和取材分析表明,activity骨部件的高活动水平和水泥固定不足可能会导致全聚乙烯pa骨部件的桩钉骨折。

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