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The strength of suture configurations in arthroscopic rotator cuff repair.

机译:关节镜式肩袖修补术中缝合结构的强度。

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摘要

PURPOSE: This study evaluated the strength of different suture configurations with the use of a recently introduced arthroscopic suture passer (ExpressSew; Surgical Solutions, Valencia, CA). METHODS: The ultimate tensile strength and mode of failure of each suture configuration were repeatedly tested on a validated porcine rotator cuff tendon model, with the use of standard suture material (No. 2 FiberWire [Arthrex, Naples, FL]) passed with ExpressSew and tested on a Hounsfield digital tensiometer type H20K-W (Tinius Olsen, Hersham, PA). RESULTS: The strongest construct was 2 mattress sutures (mean, 169 N; standard deviation, 56.1 N); this was followed in strength by a single modified Kessler suture (mean, 161 N; standard deviation, 16.9 N), 4 simple sutures (mean, 155 N; standard deviation, 27.3 N), and finally, a single Mason-Allen suture (mean, 140 N; standard deviation, 28.6 N). CONCLUSIONS: Study results show little difference in strength for varying complexities of suture configurations. In simple terms, no demonstrable difference was seen in the strength of construct, whether the surgeon used 4 simple sutures, 2 mattress sutures, or 1 grasping suture. CLINICAL RELEVANCE: This study allows the surgeon to justify use of the simplest configuration of suture passage that works in his hands, for the purpose of attaining a reliable and repeatable repair of the rotator cuff through arthroscopic methods.
机译:目的:本研究使用最近推出的关节镜缝合线通过器(ExpressSew;外科解决方案,巴伦西亚,加利福尼亚)评估了不同缝合结构的强度。方法:使用标准缝线材料(No. 2 FiberWire [Arthrex,Naples,FL]),并通过ExpressSew和ExpressSew,在经过验证的猪肩袖肌腱模型上反复测试每种缝线配置的极限抗拉强度和破坏模式。在Hounsfield H20K-W型数字张力计(Tinius Olsen,宾夕法尼亚州Hersham)上进行了测试。结果:最坚固的构造是2根褥式缝合线(平均169 N;标准差56.1 N)。其次是改良的Kessler缝合线(平均161 N;标准偏差:16.9 N),4条简单缝合线(平均155 N;标准偏差:27.3 N),最后是单一的Mason-Allen缝合线(平均值140 N;标准偏差28.6 N)。结论:研究结果表明,对于不同复杂度的缝合线,强度差异不大。简而言之,无论外科医生使用4条简单缝合线,2条床垫缝合线还是1条抓紧缝合线,构造强度均无明显差异。临床相关性:这项研究使外科医生能够证明使用在他手中起作用的最简单的缝合线配置的合理性,目的是通过关节镜检查方法对肩袖进行可靠且可重复的修复。

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