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Loading capacity of dynamic knee spacers: a comparison between hand-moulded and COPAL spacers

机译:装载动态膝关节垫片的容量:手工模制和基本垫片之间的比较

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BACKGROUND:The two-stage revision protocol represents the current gold standard for treating infected total knee replacement implants. Allowing early mobility with weight-bearing between staged procedures will enable early restoration to knee function. So, the mechanical performance of knee spacers is a key issue. Commercially available moulds are often used as they are easy to prepare and produce smoother surfaces of the articulating parts. However, they are costly, and only for single use. A cost-effective alternative is the surgeon-made hand-moulded spacers. In this study, we wanted to determine how the hand-moulded spacers will compare biomechanically with the commercially available COPAL spacers.METHODS:Seven cadaveric knees were implanted with knee spacers fabricated using COPAL knee moulds. The same surgeon implanted eight cadaveric knees with hand-moulded spacers. In the first test protocol, an axial load was applied at 200?mm/min till failure. In the second test protocol, the knees were cyclically loaded in five steps of 1000?cycles each from 30-400?N, 30-600?N, 30-800?N, 30-1000?N, 30-1200?N at 1.5?Hz.RESULTS:COPAL knee spacers demonstrated a maximum load and mean stiffness of 5202 (± 486.9) N and 1098 (± 201.5) N/mm respectively. The hand-moulded knee spacers demonstrated a mean stiffness of 4509 (± 1092.6) N and 1008.7 (± 275.4) N/mm respectively. The maximum axial displacement was 1.19?±?0.57?mm and 0.89?±?0.30?mm for specimens implanted with COPAL knee spacers and hand-moulded spacers respectively. The differences between COPAL and hand-moulded knee spacers were not statistically different.CONCLUSIONS:Our study demonstrated that dynamic knee spacers may be able to withstand more than the touch-down load permitted in previous studies, and this may allow more weight-bearing during ambulation. Previous studies have demonstrated that hand-moulded knee spacers have similar advantages to commercially available dynamic spacers with respect to mobility, pain, bone loss, and reinfection rate. Given that ambulation with weight-bearing up to 1200?N is permitted during rehabilitation, it may be more cost-effective to fabricate hand-moulded spacers in revision total knee arthroplasty.
机译:背景:两阶段修订协议代表了治疗感染的全膝关节置换植入物的当前金标准。允许在分阶段之间的重量承受的早期移动性将使早期恢复到膝关节。因此,膝关节间隔物的机械性能是一个关键问题。商业上可获得的模具通常使用,因为它们易于制备并产生铰接部件的更平滑的表面。但是,它们昂贵,并且仅用于单一使用。经济高效的替代方案是外科医生制造的手工制造的垫片。在这项研究中,我们想确定手工制造的间隔物如何与市售的基本间隔物进行生物机制。方法:七个尸体膝盖植入着使用基准膝膝部模具制造的膝关节垫。同样的外科医生用手工制造的垫片植入了八个尸体膝盖。在第一种试验方案中,施加轴向载荷200≤mm/ min,直至发生故障。在第二个测试方案中,膝盖以1000的五个步骤循环加载,每次循环30-400Ω,30-600?n,30-800?n,30-1000?n,30-1200?n 1.5?HZ.Results:Copal膝关节间隔物分别证明了最大载荷和平均刚度为5202(±486.9)N和1098(±201.5)N / mm。手工模制的膝关节间隔物分别证明了4509(±1092.6)N和1008.7(±275.4)N / mm的平均刚度。最大轴向位移为1.19?±0.57Ω·mm和0.89?±0.30Ωmm,用于分别植入基准膝关节垫片和手工模制的间隔物。基本和手工模制的膝盖间隔物之间​​的差异没有统计学上不同。结论:我们的研究表明,动态膝关节间隔物可能能够承受超过先前研究中允许的触控负载,这可能在此期间允许更多的负重载荷步行。以前的研究表明,手工模制的膝关节间隔物对商业上可获得的动态间隔物具有类似的优势,相对于迁移率,疼痛,骨质损失和再摄取率。鉴于在康复期间允许使用负重1200ΩN的气动,在修订膝关节置换术中制造手工模塑间隔物可能更具成本效益。

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