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α-生育酚稳定辐照超高分子量聚乙烯的分层和粘着磨损行为。

Delamination and adhesive wear behavior of alpha-tocopherol-stabilized irradiated ultrahigh-molecular-weight polyethylene.

机构信息

Harris Orthopedic Biomaterials and Biomechanics Laboratory, Massachusetts General Hospital, Boston, Massachusetts 02114, USA.

出版信息

J Arthroplasty. 2010 Jun;25(4):635-43. doi: 10.1016/j.arth.2009.04.005. Epub 2009 Jun 2.

Abstract

Wear and delamination of conventional ultrahigh-molecular-weight polyethylene (UHMWPE) components used in total knee arthroplasty can compromise long-term performance. Radiation cross-linking and melt-annealing reduced wear and increased delamination resistance of UHMWPE. An alternative material is the alpha-tocopherol-stabilized irradiated UHMWPE (alphaTPE), with improved mechanical and fatigue properties vs irradiated and melted UHMWPE. We studied the wear and delamination resistance of alphaTPE and conventional UHMWPE (direct compression molded GUR 1050 and Himont 1900) under reciprocating unidirectional motion. Wear resistance was improved, and no delamination was observed in alphaTPE. Accelerated aging did not alter the wear and delamination behavior of alphaTPE. The GUR 1050 UHMWPE showed delamination and pitting when subjected to unidirectional reciprocating motion after accelerated aging. Himont 1900 UHMWPE showed no delamination when subjected to unidirectional reciprocating motion after accelerated aging. alpha-Tocopherol-stabilized irradiated UHMWPE is advanced for use in total knee arthroplasty due to its high resistance to wear, delamination, and oxidation.

摘要

传统的超高分子量聚乙烯(UHMWPE)部件在全膝关节置换术中的磨损和分层会影响长期性能。辐射交联和熔融退火降低了 UHMWPE 的磨损并提高了分层阻力。另一种替代材料是经过 α-生育酚稳定的辐照 UHMWPE(αTPE),与经过辐照和熔融的 UHMWPE 相比,它具有更好的机械性能和疲劳性能。我们研究了αTPE 和传统的 UHMWPE(直接压缩模塑的 GUR 1050 和 Himont 1900)在往复单向运动下的耐磨性和分层阻力。αTPE 的耐磨性得到了提高,并且没有观察到分层。加速老化并没有改变αTPE 的磨损和分层行为。在经过加速老化后进行单向往复运动时,GUR 1050 UHMWPE 出现了分层和点蚀。在经过加速老化后进行单向往复运动时,Himont 1900 UHMWPE 没有出现分层。由于其对磨损、分层和氧化的高抵抗力,α-生育酚稳定的辐照 UHMWPE 是全膝关节置换术的首选材料。

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