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Rotating Platform versus Fixed-bearing Total Knees: An In Vitro Study of Wear

机译:旋转平台与固定支撑全膝关节:磨损的体外研究

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摘要

One of the assumed benefits of mobile bearings is the reduction of UHMWPE wear. However, to date, such benefit has not been categorically proven. To test the hypothesis that rotating platform total knee arthroplasty would have less wear than a fixed-bearing of the same design, this in vitro study compared the wear and kinematics (which influence wear) of one type of mobile with fixed-bearing tibial components of otherwise identical design. We tested four fixed bearing (FB) and four rotating platforms (RP) on force control knee simulators using identical ISO standard force inputs and simulated soft tissue restraint for 6 million walking cycles. The internal/external rotations peaked just before toe off, reaching an average maximum of 7° internal (tibial rotation) in the RP, 1.5 times that of the FB, which peaked at approximately 4.5° internally. Two of the RP specimens showed infrequent and mostly temporary dislocations of the UHMWPE insert. The wear rate for the FB averaged 8.14 ± 2.63 mg/million cycles and the RP averaged 6.78 ± 1.74 mg/million cycles. Both were very low wear rates compared with most other implants tested similarly in the same laboratory. We concluded polyethylene wear was similar for both designs.
机译:移动轴承的假定优点之一是减少UHMWPE磨损。但是,迄今为止,尚未明确证明这种好处。为了验证以下假设:旋转平台全膝关节置换术比相同设计的固定支架具有更少的磨损,这项体外研究比较了一种类型的具有固定支架的胫骨假体的磨损和运动学(影响磨损)其他方面相同的设计。我们在力控制膝盖模拟器上使用相同的ISO标准力输入和模拟的软组织约束测试了600万步的​​四个固定轴承(FB)和四个旋转平台(RP)。内部/外部旋转刚好在脚趾离开之前达到峰值,在RP中达到内部最大平均7°(胫骨旋转),是FB的最大1.5倍,在内部大约4.5°达到峰值。 RP中有两个标本显示UHMWPE插入物很少或大部分是暂时性脱位。 FB的平均磨损率是8.14±2.63 mg /百万次循环,而RP的平均磨损率是6.78±1.74 mg /百万次循环。与在同一实验室中进行类似测试的大多数其他植入物相比,两者的磨损率都非常低。我们得出结论,两种设计的聚乙烯磨损相似。

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