首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Removal torque of nail interlocking screws is related to screw proximity to the fracture and screw breakage
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Removal torque of nail interlocking screws is related to screw proximity to the fracture and screw breakage

机译:钉子互锁螺钉的去除扭矩与螺钉接近骨折处和螺钉断裂有关

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摘要

Studies have shown that titanium implants can be challenging to explant due to the material's excellent biocompatibility and resulting osseointegration. Clinically, titanium alloy nail interlocking screws may require removal to dynamize a construct or revise the nail due to nonunion, infection, pain, or periprosthetic fracture. This study was designed to determine what variables influence the removal torque for titanium alloy interlocking screws. An intramedullary nail with four interlocking screws was used to stabilize a 1-cm segmental femoral defect in a canine model for 16weeks. The animals were observed to be active following a several-day recovery after surgery. In six animals, the femora and implanted nail/screws were first tested to failure in torsion to simulate periprosthetic fracture of an implant after which the screws were then removed. In four additional animals, the screws were removed without mechanical testing. Both intraoperative insertional and extraction torques were recorded for all screws. Mechanical testing to failure broke 10/24 screws. On average, the intact screws required 70% of the insertional torque during removal while broken screws only required 16% of the insertional torque (p<0.001). In addition, intact screws closer to the fracture required 2.8 times more removal torque than the outboard distal screw (p<0.005). On average, the angle of rotation to peak torque was approximate to 80 degrees. The peak axial load did not significantly correlate with the torque required to remove the screws. On average, the removal torque was lower than at the time of insertion, and less torque was required to remove broken screws and screws remote to the fracture. However, broken screws will require additional time to retrieve the remaining screw fragment. This study suggests that broken screws and screws in prematurely active patients will require less torque to remove.
机译:研究表明,由于钛材料的优异的生物相容性和由此产生的骨整合,因此钛植入物可能难以移植。临床上,由于不愈合,感染,疼痛或假体周围骨折,钛合金钉子互锁螺钉可能需要拆除以使结构动态化或修改钉子。本研究旨在确定哪些变量会影响钛合金互锁螺钉的去除扭矩。带有四个互锁螺钉的髓内钉用于稳定犬模型中1cm的节段性股骨缺损16周。手术后几天恢复后,观察到动物活动。在六只动物中,首先对股骨和植入的指甲/螺钉进行扭转破坏测试,以模拟植入物的假体周围骨折,然后移除螺钉。在另外四只动物中,在没有机械测试的情况下移除了螺钉。记录所有螺钉的术中插入和拔出扭矩。机械测试失败,破坏了10/24螺钉。平均而言,完整的螺钉在拆卸过程中需要70%的插入扭矩,而折断的螺钉仅需要16%的插入扭矩(p <0.001)。此外,更靠近骨折处的完整螺钉所需的去除扭矩是外侧远端螺钉的2.8倍(p <0.005)。平均而言,与峰值扭矩的旋转角度约为80度。峰值轴向载荷与拆卸螺钉所需的扭矩没有显着相关。平均而言,去除扭矩低于插入时的扭矩,并且需要较小的扭矩来去除损坏的螺钉和远离骨折的螺钉。但是,断裂的螺钉将需要额外的时间来取出剩余的螺钉碎片。这项研究表明,螺钉断裂和过早活动患者的螺钉将需要较小的扭矩才能卸下。

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