首页> 美国卫生研究院文献>Hand (New York N.Y.) >Does Strand Configuration and Number of Purchase Points Affect the Biomechanical Behavior of a Tendon Repair? A Biomechanical Evaluation Using Different Kessler Methods of Flexor Tendon Repair
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Does Strand Configuration and Number of Purchase Points Affect the Biomechanical Behavior of a Tendon Repair? A Biomechanical Evaluation Using Different Kessler Methods of Flexor Tendon Repair

机译:股线的配置和购买点的数量会影响肌腱修复的生物力学行为吗?使用不同的Kessler方法进行屈肌腱修复的生物力学评估

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摘要

This study compares the mechanical properties of modified Kessler and double-modified Kessler flexor tendon repair techniques and evaluates simple modifications on both methods. Forty fresh sheep flexor tendons were divided equally into four groups. A transverse sharp cut was done in the middle of each tendon and then repaired with modified Kessler technique, modified Kessler with additional purchase point in the midpoint of each longitudinal strand, double-modified Kessler technique, or a combination of outer Kessler and inner cruciate configuration based on double-modified Kessler technique. The tendons were tested in a tensile testing machine to assess the mechanical performance of the repairs. Outcome measures included gap formation and ultimate forces. The gap strengths of the double-modified Kessler technique (30.85 N, SD 1.90) and double-modified Kessler technique with inner cruciate configuration (33.60 N, SD 4.64) were statistically significantly greater than that of the two-strand modified Kessler (22.56 N, SD 3.44) and modified Kessler with additional purchase configuration (21.75 N, SD 4.03; Tukey honestly significant difference test, P < 0.000). There were statistically significant differences in failure strengths of the all groups (analysis of variance, P < 0.000). With an identical number of strands, the gap formation and ultimate forces of the repairs were not changed by additional locking purchase point in modified Kessler repair or changing the inner strand configuration in double-modified Kessler repair. The results of this study show that the number of strands across the repair site together with the number of locking loops clearly affects the strength of the repair; meanwhile, the longitudinal strand orientation and number of purchase points in a single loop did not affect its strength.
机译:这项研究比较了改良的Kessler和双重改良的Kessler屈肌腱修复技术的力学性能,并评估了两种方法的简单修改。将四十只新鲜的羊屈肌腱平均分为四组。在每个肌腱的中间进行横向锋利切割,然后使用改良的Kessler技术,改良的Kessler(在每个纵向链的中点附加购买点),双重改良的Kessler技术或外部Kessler和内部十字形构型进行修复基于双重修改的Kessler技术。在拉伸试验机中对肌腱进行了测试,以评估修复的机械性能。结果措施包括缺口形成和极限力。双重修饰的Kessler技术(30.85 N,SD 1.90)和具有内部十字形构型的双重修饰的Kessler技术(33.60 N,SD 4.64)的间隙强度在统计学上显着大于两链修饰的Kessler(22.56 N) ,SD 3.44)和修改后的Kessler(带有额外的购买配置)(21.75 N,SD 4.03; Tukey坦白地说,显着性差异测试,P 0.000)。所有组的失败强度都有统计学上的显着差异(方差分析,P)<0.000)。对于相同数量的钢绞线,在改进的Kessler修补中没有额外的锁定购买点,或者在双重改进的Kessler修补中更改了内部钢绞线配置,则修补的缝隙形成和极限力没有改变。这项研究的结果表明,整个修复部位的股数以及锁定环的数量明显影响了修复的强度。同时,单股线的纵向股线取向和购买点数不影响其强度。

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