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A Biomechanical Study of a Novel Asymmetric 6-Strand Flexor Tendon Repair Using Porcine Tendons

机译:使用猪腱修复新型不对称6股屈肌腱的生物力学研究

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摘要

Background: This study evaluated the biomechanical performance of a novel asymmetric 6-strand flexor tendon repair technique without locking loops. Methods: Twenty porcine flexor tendons were equally repaired by using the asymmetric technique and compared with the modified Lim-Tsai repair technique. The ultimate tensile strength, load to 1-mm gap force, stiffness, and mechanism of failure were measured. Results: The asymmetric repair technique had significantly higher tensile strength (63.3 ± 3.7 N) than the modified Lim-Tsai repairs (46.7 ± 8.3 N). Conclusions: A novel flexor tendon repair technique with improved biomechanical performance may be available for use in flexor tendon repairs.
机译:背景:这项研究评估了一种新型的不锁定环的不对称6股屈肌腱肌腱修复技术的生物力学性能。方法:采用不对称技术平均修复猪20条屈肌腱,并与改良的Lim-Tsai修复技术进行比较。测量了极限拉伸强度,1-mm间隙力的载荷,刚度和破坏机理。结果:非对称修复技术的拉伸强度(63.3±3.7 N)比改良的Lim-Tsai修复技术(46.7±8.3 N)高得多。结论:具有改进的生物力学性能的新型屈肌腱修复技术可用于屈肌腱修复。

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