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Contact Characteristics of Anatomical and Symmetrical Unicompartmental Knee Prostheses

机译:解剖对称的单室膝关节假体的接触特性

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The development of artificial joints is now considered to be quite mature, and is the main treatment for osteoarthritis. However, in recent unicompartmental knee arthroplasty (UKA) clinical follow-ups, complications due to the wearing of polyethylene (PE) tibial components still exist. Therefore, this study is focused on avoiding and minimizing damage to the PE tibial component. Currently, the most common problem in the application of UKA is the malresection of the tibial plateau, often resulting in malpositioning of the tibial implant. This malpositioning may be the main reason for advanced wear and dislocation of the PE tibial component. In this study, in vitro test was used to study the stress change of malpositioned PE tibial components in order to better understand the damaging actions on PE tibial components. From in vitro test, it was found that anatomically designed unicompartmental knee prostheses (UKP) allowed more positional error in varus tilt than symmetrically designed UKP. Anatomical and symmetrical UKP should avoid any positional error greater than 5° and 10° valgus tilt respectively. Otherwise, increased wear of PE tibial components would result in shortened lifetime of the artificial joint.
机译:现在认为人工关节的发育已经相当成熟,并且是骨关节炎的主要治疗方法。但是,在最近的单室膝关节置换术(UKA)临床随访中,由于聚乙烯(PE)胫骨组件磨损而引起的并发症仍然存在。因此,本研究的重点是避免和最大程度地减少对PE胫骨组件的损害。当前,在UKA的应用中最常见的问题是胫骨平台的切除不正确,通常导致胫骨植入物的位置不正确。这种位置不正确可能是导致PE胫骨组件长期磨损和脱位的主要原因。在这项研究中,体外试验用于研究错位的PE胫骨组件的应力变化,以便更好地了解对PE胫骨组件的破坏作用。从体外测试中发现,与对称设计的UKP相比,解剖设计的单室膝关节假体(UKP)在内翻倾斜中允许更多的位置误差。解剖学和对称UKP分别应避免任何大于5°和10°外翻倾斜的位置误差。否则,增加PE胫骨组件的磨损会导致人造关节的寿命缩短。

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