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十字韧带假体:强度、蠕变和疲劳特性。

Cruciate ligament prosthesis: strength, creep, and fatigue properties.

作者信息

Grood E S, Noyes F R

出版信息

J Bone Joint Surg Am. 1976 Dec;58(8):1083-8.

PMID:1002749
Abstract

The mechanical properties of the Richards polyethylene ligament implant were studied and compared with the strength of human cruciate ligament preparations. The implant yields and plastically deforms at a force of 420 newtons (ninety-four pounds) and approximately 10 per cent elongation when tested at a strain rate of 100 per second. This is one-fourth the average tensile strength of the human anterior curciate ligament preparations. When tested at a strain rate of 1 per cent per second the implant's yield-point force was lowered by 15 per cent. The implant exhibits considerable viscoelastic behavior and will progressively elongate under repetitive loads when insufficient time is allowed for it to return to its original length. In bending, the implant did not fail after eighty million stress reversals (forty million revolutions) when tested while immersed in saline solution at body temperature. The tests indicate that the tensile strength of the implant is low in comparison with both the strength of human preparations and estimates of actual in vivo functional loads. We conclude that caution is required in the use of this implant.

摘要

对理查兹聚乙烯韧带植入物的力学性能进行了研究,并与人体十字韧带制剂的强度进行了比较。当以每秒100的应变率进行测试时,该植入物在420牛顿(94磅)的力和大约10%的伸长率下屈服并发生塑性变形。这是人体前十字韧带制剂平均拉伸强度的四分之一。当以每秒1%的应变率进行测试时,植入物的屈服点力降低了15%。该植入物表现出相当大的粘弹性行为,当没有足够时间使其恢复到原始长度时,在重复载荷下会逐渐伸长。在弯曲试验中,当在体温下浸入盐溶液中进行测试时,该植入物在八千万次应力反向(四千万次旋转)后没有失效。测试表明,与人体制剂的强度和实际体内功能负荷的估计值相比,该植入物的拉伸强度较低。我们得出结论,在使用这种植入物时需要谨慎。

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