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Animal Models for Tendon Repair Experiments: A Comparison of Pig, Sheep and Human Deep Flexor Tendons in Zone II

机译:用于肌腱修复实验的动物模型:II区中猪,绵羊和人深屈肌肌腱的比较

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Background: This laboratory study compared pig, sheep and human deep flexor tendons in regards to their biomechanical compa-rability. Methods: To investigate the relevant biomechanical properties for tendon repair experiments, the tendons resistance to cheese-wiring (suture drag/splitting) was assessed. Cheese-wiring of a suture through a tendon is an essential factor for repair gapping and failure in a tendon repair. Results: Biomechanical testing showed that forces requited to pulling a uniform suture loop through sheep or pig tendons in Zone II were higher than in human tendons. At time point zero of testing these differences did not reach statistical significance, but differences became more pronounced when forces were measured beyond initial cheese-wiring (2 mm, 5 mm and 10 mm). The stronger resistance to cheese-wiring was more pronounced in the pig tendons Also regarding size and histology, sheep tendons were more comparable to human tendons than pig tendons. Conclusions: Differences in tendon bio-properties should be kept in mind when comparing and interpreting the results of laboratory tendon experiments.
机译:背景:该实验室研究比较猪,绵羊和人深屈肌肌腱,关于它们的生物力学的组合性。方法:探讨肌腱修复实验的相关生物力学性能,评估对奶酪布线(缝合拖曳/分裂)的肌腱抗性。通过肌腱缝合缝合的奶酪 - 布线是在肌腱修复中修复间隙和失败的必要因素。结果:生物力学检测显示,以绵羊或II区猪肌腱拉动均匀缝线环的力高于人筋。在测试的时间点,这些差异没有达到统计学意义,但是当初始奶酪布线(2 mm,5 mm和10 mm)超出力时,差异变得更加明显。在猪筋器中,猪筋的抗性更加明显,猪筋也更加明显,绵羊筋与人肌腱比猪肌腱更媲美。结论:在比较和解释实验室肌腱实验结果的情况下,应牢记肌腱生物特性的差异。

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