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受损缝线的强度:一项体外研究。

Strength of damaged suture: an in vitro study.

作者信息

Wright Patrick B, Budoff Jeffrey E, Yeh Ming Long, Kelm Zachary S, Luo Zong-Ping

机构信息

Department of Orthopaedic Surgery, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Arthroscopy. 2006 Dec;22(12):1270-1275.e3. doi: 10.1016/j.arthro.2006.08.019.

Abstract

PURPOSE

To determine the mechanical properties of damaged suture.

METHODS

Undamaged and damaged sutures were tested by a single pull to failure. Sutures were damaged with a razor blade incorporated into a custom-designed jig. Sutures were tested to failure by straight pull and by pulling at 180 degrees through a suture anchor eyelet. The friction of sutures through anchors was also tested.

RESULTS

For the straight line pull test, undamaged FiberWire (Arthrex, Naples, FL) had the highest load to failure (LTF) and ultimate tensile strength (UTS) of all sutures tested. Undamaged Orthocord (Mitek, Somerville, NJ) ranked second in both properties. Uncut polydioxanone (PDS) suture (Ethicon, Somerville, NJ) had a higher LTF and a comparable UTS with respect to Tevdek (Deknatel, Mansfield, MA) and Ethibond (Ethicon). For cut sutures, FiberWire and Orthocord had a significantly higher LTF and UTS than the other sutures tested. Suture stiffness was not significantly affected when the suture was cut. For the suture anchor test, FiberWire and Orthocord had the highest LTF, whether undamaged or damaged. When cut, PDS had the greatest loss of LTF and UTS during both tests.

CONCLUSIONS

The newer polyethylene core sutures (FiberWire and Orthocord) have superior mechanical properties compared with other sutures. Their superior properties are maintained even when cut. Although uncut PDS had equivalent or superior strength compared with Ethibond and Tevdek, once cut, PDS suture was weakened significantly more compared with all other sutures tested.

CLINICAL RELEVANCE

The mechanical properties of damaged suture are important to all surgeons who use suture arthroscopically.

摘要

目的

确定受损缝线的力学性能。

方法

对未受损和受损的缝线进行单轴拉伸直至断裂测试。使用定制夹具中的剃须刀片使缝线受损。通过直线拉伸以及通过缝线锚钉小孔以180度角拉伸使缝线测试至断裂。还测试了缝线穿过锚钉时的摩擦力。

结果

对于直线拉伸测试,在所有测试的缝线中,未受损的FiberWire(Arthrex公司,那不勒斯,佛罗里达州)具有最高的断裂载荷(LTF)和极限抗拉强度(UTS)。未受损的Orthocord(Mitek公司,萨默维尔,新泽西州)在这两项性能方面均排名第二。未切割的聚二氧杂环己酮(PDS)缝线(Ethicon公司,萨默维尔,新泽西州)相对于Tevdek(Deknatel公司,曼斯菲尔德,马萨诸塞州)和Ethibond(Ethicon公司)具有更高的断裂载荷和相当的极限抗拉强度。对于切割后的缝线,FiberWire和Orthocord的断裂载荷和极限抗拉强度明显高于其他测试缝线。缝线切割后,其刚度未受到显著影响。对于缝线锚钉测试,无论未受损还是受损,FiberWire和Orthocord的断裂载荷最高。切割后,PDS在两项测试中断裂载荷和极限抗拉强度的损失最大。

结论

新型聚乙烯芯缝线(FiberWire和Orthocord)与其他缝线相比具有优异的力学性能。即使切割后,它们的优异性能仍得以保持。尽管未切割的PDS与Ethibond和Tevdek相比具有同等或更高的强度,但一旦切割,PDS缝线与所有其他测试缝线相比削弱得更为明显。

临床意义

受损缝线的力学性能对所有在关节镜手术中使用缝线的外科医生来说都很重要。

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