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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Unlocked and locked elastic stable intramedullary nailing in an ovine tibia fracture model: A biomechanical study
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Unlocked and locked elastic stable intramedullary nailing in an ovine tibia fracture model: A biomechanical study

机译:解锁和锁定的弹性稳定髓内钉在胫骨胫骨骨折模型中的生物力学研究

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摘要

In the present study, four different systems of elastic stable intramedullary nails (unlocked, Ender stainless steel nails lockedwith 3-mmscrews, titaniumnails lockedwith end caps, titaniumnails locked with plugs and 3-mm screws) were implanted in cadaveric ovine tibiae. Fractures were simulated by a transverse diaphyseal osteotomy. The specimens were subjected to simultaneous axial and torsional fatigue loading of 5000 and 1000 cycles, respectively. The unlocked systems failed at an axial load of 200 N peak amplitude. End caps systems withstood axial loads up to 800 N for 1000 cycles, and ender nails and plugs lasted up to 1000 N for 1000 cycles. All systems showed a decrease of axial stiffness with higher loads and endured cycles. Ender nails and nails lockedwith plugs failed by penetration of the distal epiphysis rather than by loosening of the interlocking system. Overall, the titanium nails locked with plugs and 3-mm screws exhibited superior test results.
机译:在本研究中,将四种不同的弹性稳定的髓内钉系统(未锁定,用3毫米螺钉锁定的Ender不锈钢钉,用端盖锁定的钛金属钉,用插头和3毫米螺钉锁定的钛金属钉)植入了尸体绵羊胫骨。骨折通过横a骨截骨术模拟。样品分别承受5000和1000个循环的轴向和扭转疲劳载荷。解锁系统在200 N峰值振幅的轴向载荷下失效。端盖系统可承受1000循环的最高800 N的轴向载荷,并且压钉和塞子可承受1000循环的高达1000 N的载荷。所有系统都显示出较高的载荷和持续的循环会降低轴向刚度。尾钉和用栓钉锁住的钉子通过远端epi骨的穿透而不是由于互锁系统的松动而失效。总体而言,用塞子和3毫米螺钉锁定的钛钉表现出优异的测试结果。

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