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Load Profile and Fluid Composition Influence the Soak Behavior of UHMWPE Implants

机译:负载曲线和流体组成影响UHMWPE植入物的浸泡行为

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Wear of total joint replacements is determined gravimetrically in simulator studies. A mix of bovine serum, distilled water, and additives is intended to replicate the lubrication conditions in vivo. Load soak stations are used to correct for weight gain due to fluid absorption. Although the implementation of a soak station is considered only as an option for wear testing, this study indicated that fluid absorption depends on the lubricant composition as well as on the applied load profile. Two different fluid recipes were tested with three load scenarios each. Standard ultra-high molecular weight polyethylene (UHMWPE) pins acted against commercially available ceramic hip balls. Dynamic (0 to 1000 N), static (1000 N), and no load were applied for 23.1 days (or 2·10~6 cycles). Both lubricant recipes based on the same mix of deionized water and newborn calf serum (final protein content: 30 g/L), and differed in the chemicals admixed to the fluid to minimize bacterial growths and to prevent protein precipitation. After test completion, the group of samples tested in fluid B gained 2.4-, 3.6-, and 4.2-fold the weight of samples submersed in fluid A for the dynamically, statically, and nonloaded samples, respectively. The specimens showed a significantly higher weight gain under dynamic load than subjected to static or no load for both fluids. The results of this study suggest the implementation of a load-soak control station for every wear test when UHMWPE materials are examined.
机译:在模拟器研究中,重量分别确定总关节置换的磨损。牛血清,蒸馏水和添加剂的混合物旨在复制体内润滑条件。负载浸泡站用于校正由于流体吸收引起的重量增益。尽管浸泡站的实施仅被认为是磨损测试的选择,但是该研究表明流体吸收取决于润滑剂组合物以及施加的负载曲线。用三种负载场景测试两种不同的流体配方。标准超高分子量聚乙烯(UHMWPE)销采用市售的陶瓷髋柱。动态(0至1000 n),静态(1000n),施加23.1天(或2·10〜6个循环)。两种润滑剂配方都基于相同的去离子水和新生儿小牛血清混合物(最终蛋白质含量:30g / L),并在混合到流体的化学物质中不同,以最大限度地减少细菌生长并防止蛋白质沉淀。在完成后,在流体B中测试的样品组分别在流体A中浸没在流体A中的样品的重量,用于动态地,静态,静脉的样品。样品在动态负荷下显示出明显较高的重量增益,而不是对两个流体进行静态或无负载。该研究的结果表明,当检查UHMWPE材料时,为每种磨损测试的负载浸泡控制站的实现。

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