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Damage due to rolling in total knee replacement—The influence of tractive force

机译:全膝关节置换术中由于滚动引起的损伤—牵引力的影响

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摘要

The femoral condyles of a knee prosthesis articulate with a combination of rolling and sliding on the tibial polyethylene plateau. Little is known about potential polyethylene damage due to rolling motion. Since rolling does not exclude the presence of tangential surface loads, this study sought to investigate the influence of tractive rolling on the wear of polyethylene. A “wheel-on-flat” apparatus, consisting of a metal wheel and a polyethylene flat, mimicked contact conditions present in total knee replacement. An increasingly tractive force under conditions of pure rolling was applied. It was found that under rolling kinematics a tangential surface load of up to 17% of the normal load could be transferred through the contact. Surface damage was dependent on the amount of tractive force and appeared more severe with higher forces. In the region of highest tractive force, wear features were identified that resembled perpendicular ridges on surfaces of retrieved tibial polyethylene devices. This suggests that tractive rolling may be a relevant wear mode in total knee replacement.
机译:膝关节假体的股骨dy在胫骨聚乙烯高原上以滚动和滑动相结合的方式进行关节运动。对于由于滚动运动而引起的潜在聚乙烯损坏知之甚少。由于轧制不排除切向表面载荷的存在,因此本研究试图研究牵引轧制对聚乙烯磨损的影响。由金属轮和聚乙烯扁平轮胎组成的“扁平轮胎”设备模拟了全膝关节置换术中出现的接触情况。在纯轧制条件下施加了越来越大的牵引力。已经发现,在滚动运动学中,切向表面载荷最多可通过接触传递法向载荷的17%。表面损伤取决于牵引力的大小,并且在更大的力下会变得更严重。在牵引力最大的区域中,发现了磨损特征,类似于在回收的胫骨聚乙烯器械表面上的垂直脊。这表明牵引式滚动可能是全膝关节置换中的一种重要磨损方式。

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