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首页> 外文期刊>Journal of Hand Surgery. American Volume >Gliding resistance and strength of composite sutures in human flexor digitorum profundus tendon repair: an in vitro biomechanical study.
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Gliding resistance and strength of composite sutures in human flexor digitorum profundus tendon repair: an in vitro biomechanical study.

机译:人体指趾前屈肌腱肌腱修复中复合缝合线的抗滑性和强度:一项体外生物力学研究。

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PURPOSE: Although the strength of a tendon repair is clearly important, the friction of the repair is also a relevant consideration. The purpose of this study was to characterize the frictional coefficient, gliding resistance, and breaking strength of suture materials and a suture construct commonly used for flexor tendon repair. METHODS: We measured the friction coefficients of 3-0 braided nylon enclosed in a smooth nylon outer shell (Supramid, S. Jackson, Alexandria, VA), 3-0 braided polyester coated with polybutilate (Ethibond, Ethicon, Somerville, NJ), and 3-0 braided polyester/monofilament polyethylene composite (FiberWire, Arthrex, Naples, FL) sutures. We also measured the gliding resistance, linear breaking strength, and resistance to gapping of zone 2 modified Pennington tendon repairs with the 2 lowest-friction sutures in 20 human cadaveric flexor digitorum profundus tendons. RESULTS: The braided polyester/monofilament polyethylene composite had a significantly lower friction coefficient (0.054) than either the coated polyester (0.076) or nylon (0.130) sutures. The gliding resistances of the repaired tendons with braided/monofilament polyethylene composite suture and those of coated, braided polyester were similar. The strength of the 2 repairs (force to produce a 2 mm gap) and resistance to gap formation were also not significantly different. CONCLUSIONS: Braided polyester composite is a low-friction suture material. However, when this suture was used for tendon repair with a locking suture technique, it did not show a significant effect on the gliding resistance and repair strength compared with the same repair using a coated polyester suture.
机译:目的:尽管肌腱修复的强度显然很重要,但修复的摩擦力也是一个相关的考虑因素。这项研究的目的是表征缝线材料和通常用于屈肌腱修复的缝线结构的摩擦系数,滑动阻力和断裂强度。方法:我们测量了包裹在光滑尼龙外壳(Supramid,S。Jackson,Alexandria,VA)中的3-0编织尼龙,涂有多丁二酸酯的3-0编织聚酯(Ethibond,Ethicon,Somerville,NJ)的摩擦系数, 3-0编织聚酯/单丝聚乙烯复合材料(FiberWire,Arthrex,那不勒斯,FL)缝合线。我们还用20条人体尸体屈指前屈肌腱的2条最低摩擦缝线测量了2区改良的Pennington腱修复的抗滑性,线性断裂强度和抗裂性。结果:编织的聚酯/单丝聚乙烯复合材料的摩擦系数(0.054)明显低于涂覆的聚酯(0.076)或尼龙(0.130)缝线。编织/单丝聚乙烯复合缝合线修复的腱的耐滑性与涂层的编织聚酯的耐滑性相似。两次修复的强度(产生2 mm间隙的力)和对间隙形成的抵抗力也没有显着差异。结论:编织聚酯复合材料是一种低摩擦缝合材料。但是,当使用锁定缝合技术将该缝合线用于肌腱修复时,与使用涂层聚酯缝合线进行的相同修复相比,它对滑动阻力和修复强度没有显着影响。

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