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A Comparative Biomechanical Analysis of 2 Double-Row, Distal Triceps Tendon Repairs

机译:2双行远端肱三头肌腱修复的比较生物力学分析

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Background: Triceps tendon ruptures are rare orthopaedic injuries that almost always require surgical repair. This study tests the biomechanical properties of an original anchorless double-row triceps repair against a previously reported knotless double-row repair. Hypothesis: The anchorless double-row triceps repair technique will yield similar biomechanical properties when compared with the knotless double-row repair technique. Study Design: Controlled laboratory study. Methods: Eighteen cadaver arms were randomized into 2 groups. One group received the anchorless repair and the other received the knotless anchor repair. A materials testing system (MTS) machine was used to cycle the repaired arms from 0° to 90° with a 2.5-pound weight for 1500 cycles at 0.25 Hz. Real-time displacement of the tendon was measured during cycling using a probe. Load to failure was performed after completion of cyclic loading. Results: The mean displacement with the anchorless technique was 0.77 mm (SD, 0.25 mm) at 0° (full elbow extension) and 0.76 mm (SD, 0.38 mm) at 90° (elbow flexion). The mean displacement with the anchored technique was 0.83 mm (SD, 0.57 mm) at 0° and 1.01 mm (SD, 0.62 mm) at 90°. There was no statistically significant difference for tendon displacement at 0o ( P = .75) or 90o ( P = .31). The mean load to failure with the anchorless technique was 618.9 N (SD, 185.6 N), while it was 560.5 N (SD, 154.1 N) with the anchored technique, again with no statistically significant difference ( P = .28). Conclusion: Our anchorless double-row triceps repair technique yields comparable biomechanical properties to previously described double-row triceps tendon repair techniques, with the added benefit of avoiding the cost of suture anchors. Clinical Relevance: This anchorless double-row triceps tendon repair can be considered as an acceptable alternative to a knotless anchor repair for triceps tendon ruptures.
机译:背景:三头肌腱断裂是罕见的骨科损伤,几乎总是需要手术修复。这项研究测试了原始的无锚双排肱三头肌修复相对于以前报道的无结双排修复的生物力学性能。假设:与无结双排三头肌修复技术相比,无锚双排三头肌修复技术将产生相似的生物力学性能。研究设计:受控实验室研究。方法:将十八具尸体手臂随机分为两组。一组进行了无锚锚修理,另一组进行了无结锚修理。使用材料测试系统(MTS)机器以0.25 Hz的重量将修复后的臂以2.5磅重从0°循环到90°进行1500个循环。在循环过程中使用探针测量肌腱的实时位移。循环加载完成后执行失败加载。结果:无锚定技术的平均位移在0°(完全肘部伸展)下为0.77 mm(SD,0.25 mm),在90°(肘部弯曲)下为0.76 mm(SD,0.38 mm)。锚定技术的平均位移在0°为0.83 mm(SD,0.57 mm),在90°为1.01 mm(SD,0.62 mm)。在0o(P = .75)或90o(P = .31)时,肌腱位移无统计学差异。无锚技术的平均破坏载荷为618.9 N(SD,185.6 N),而锚固技术的平均破坏载荷为560.5 N(SD,154.1 N),同样无统计学显着性差异(P = .28)。结论:我们的无锚双排三头肌修复技术可产生与先前描述的双排三头肌腱修复技术相当的生物力学性能,并避免了缝合锚的成本。临床意义:对于三头肌腱断裂,这种无锚双行三头肌腱修复可以被认为是无结锚固修复的可接受替代方案。

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