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首页> 外文期刊>The Journal of Bone and Joint Surgery. American Volume >Surface damage in machined ram-extruded and net-shape molded retrieved polyethylene tibial inserts of total knee replacements.
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Surface damage in machined ram-extruded and net-shape molded retrieved polyethylene tibial inserts of total knee replacements.

机译:机械加工的拉挤成型和网状模制回收聚乙烯胫骨插入物的表面损伤,全膝关节置换。

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摘要

BACKGROUND: Polyethylene wear has emerged as a major determining factor in the long-term clinical performance of total knee replacements. This study addresses the in vivo wear performance of two types of polyethylene tibial inserts used in similar total knee arthroplasty designs. METHODS: A surface damage assessment of retrieved specimens was performed for twenty-six net-shape molded tibial inserts manufactured from H1900 resin without calcium stearate additive (Miller-Galante) and forty-three machined ram-extruded tibial inserts manufactured from GUR 4150 resin with calcium stearate additive (Miller-Galante II). Stereomicroscopic inspection and digital image analysis were used to quantify the extent and severity of pitting, dimensional change, and delamination. RESULTS: Pitting and dimensional change were the most common modes of damage in both groups, with the prevalence ranging from 77% to 92% for pitting and from 51% to 81% for dimensional change. Delamination was the least common mode of damage, with the prevalence ranging from 21% to 35%. The severity of pitting was higher in association with the cemented implant-bone interface. The extent and severity of delamination increased with implantation time. No severe delamination was observed before sixty months after implantation in the net-shape molded group, whereas severe delamination was present as early as ten months after implantation in the machined ram-extruded group. The time between surgery and the discovery of damage was longer in the net-shape molded group for all modes of damage except for medial dimensional change. CONCLUSIONS: On the basis of the components available in our implant retrieval pool, we found that at equivalent levels of surface damage, the net-shape molded H1900 resin tibial inserts demonstrated longer service life than did the machined ram-extruded GUR 4150 components. The superior performance of the net-shape molded components may be related to the resin type, the absence of calcium stearate, the consolidation method, or the method of final geometry shaping. This superior damage resistance is expected to contribute to superior long-term clinical performance of net-shape molded ultra-high molecular weight polyethylene in total knee arthroplasty.
机译:背景:聚乙烯磨损已成为全膝关节置换术长期临床表现的主要决定因素。这项研究解决了在相似的全膝关节置换术设计中使用的两种类型的聚乙烯胫骨插入物的体内磨损性能。方法:对不带硬脂酸钙添加剂的H1900树脂制造的26种网状模制胫骨插入物(Miller-Galante)和由GUR 4150树脂制造的43种机加工的经夯压胫骨插入物进行了回收标本的表面损伤评估。硬脂酸钙添加剂(Miller-Galante II)。立体显微镜检查和数字图像分析用于量化点蚀,尺寸变化和分层的程度和严重性。结果:点蚀和尺寸变化是两组中最常见的损坏方式,点蚀的发生率范围从77%到92%,尺寸变化的发生率从51%到81%。分层是最不常见的损坏方式,其发生率从21%到35%。与骨水泥植入物-骨界面相关的点蚀严重程度更高。分层的程度和严重程度随植入时间的增加而增加。在网状模制组中,在植入后60个月之前未观察到严重的分层,而在机加工的拉挤成型组中,在植入后10个月就没有出现严重的分层。在网状模制组中,除内侧尺寸变化外,对于所有损伤模式,手术至发现损伤之间的时间更长。结论:根据我们植入物回收池中可用的组件,我们发现,在表面损伤水平相同的情况下,网状模制的H1900树脂胫骨镶片的使用寿命比机加工的拉挤GUR 4150组件更长。最终成型的净成型部件的性能可能与树脂类型,硬脂酸钙的缺乏,固结方法或最终几何形状成型的方法有关。这种优异的抗损伤性有望在全膝关节置换术中为网状模制超高分子量聚乙烯带来卓越的长期临床性能。

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