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首页> 外文期刊>Journal of orthopaedic research >Biomechanical comparison of single-row, double-row, and transosseous-equivalent repair techniques after healing in an animal rotator cuff tear model
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Biomechanical comparison of single-row, double-row, and transosseous-equivalent repair techniques after healing in an animal rotator cuff tear model

机译:动物旋转箍撕裂模型中单排,双排和传递等效修复技术的生物力学比较

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The transosseous-equivalent (TOE) rotator cuff repair technique increases failure loads and contact pressure and area between tendon and bone compared to single-row (SR) and double-row (DR) repairs, but no study has investigated if this translates into improved healing in vivo. We hypothesized that a TOE repair in a rabbit chronic rotator cuff tear model would demonstrate a better biomechanical profile than SR and DR repairs after 12 weeks of healing. A two-stage surgical procedure was performed on 21 New Zealand White Rabbits. The right subscapularis tendon was transected and allowed to retract for 6 weeks to simulate a chronic tear. Repair was done with the SR, DR, or TOE technique and allowed to heal for 12 weeks. Cyclic loading and load to failure biomechanical testing was then performed. The TOE repair showed greater biomechanical characteristics than DR, which in turn were greater than SR. These included yield load (p < 0.05), energy absorbed to yield (p < 0.05), and ultimate load (p < 0.05). For repair of a chronic, retracted rotator cuff tear, the TOE technique was the strongest biomechanical construct after healing followed by DR with SR being the weakest.
机译:传递等效物(TOE)转子袖带修复技术增加了与单排(SR)和双排(DR)维修相比的故障负载和肌腱和骨之间的面积,但如果这转化为改进,则没有研究研究体内愈合。我们假设兔慢性旋转器袖带撕裂模型中的脚趾修复将展示比SR更好的生物力学曲线,并且在愈合12周后博士修复。两阶段外科手术是在21个新西兰白兔上进行的。矫正右侧腰带肌腱并使其缩回6周以模拟慢性撕裂。使用SR,DR或TOE技术进行修复,并允许愈合12周。然后进行循环载荷和负载失效生物力学测试。脚趾修复显示比DR更大的生物力学特性,否则博士又大于SR。这些包括屈服载荷(P <0.05),能量吸收为产率(P <0.05)和最终载荷(P <0.05)。为了修复慢性缩回的转子袖带撕裂,脚趾技术是愈合后的最强的生物力学构建,其次是博士,SR是最弱的。

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