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在一项生物力学分析中,单轴椎弓根螺钉在皮下前路骨盆固定方面优于多轴椎弓根螺钉和双针外固定器。

Monoaxial pedicle screws are superior to polyaxial pedicle screws and the two pin external fixator for subcutaneous anterior pelvic fixation in a biomechanical analysis.

作者信息

Vaidya Rahul, Onwudiwe Ndidi, Roth Matthew, Sethi Anil

机构信息

Detroit Medical Center, Orthopedics Department, Wayne State School of Medicine, 4D UHC, St. Antoine Street, 540 E Canfield Street, Detroit, MI 48201, USA.

出版信息

Adv Orthop. 2013;2013:683120. doi: 10.1155/2013/683120. Epub 2013 Dec 3.

Abstract

Purpose. Comparison of monoaxial and polyaxial screws with the use of subcutaneous anterior pelvic fixation. Methods. Four different groups each having 5 constructs were tested in distraction within the elastic range. Once that was completed, 3 components were tested in torsion within the elastic range, 2 to torsional failure and 3 in distraction until failure. Results. The pedicle screw systems showed higher stiffness (4.008 ± 0.113 Nmm monoaxial, 3.638 ± 0.108 Nmm Click-x; 3.634 ± 0.147 Nmm Pangea) than the exfix system (2.882 ± 0.054 Nmm) in distraction. In failure testing, monoaxial pedicle screw system was stronger (360 N) than exfixes (160 N) and polyaxial devices which failed if distracted greater than 4 cm (157 N Click-x or 138 N Pangea). The exfix had higher peak torque and torsional stiffness than all pedicle systems. In torsion, the yield strengths were the same for all constructs. Conclusion. The infix device constructed with polyaxial or monoaxial pedicle screws is stiffer than the 2 pin external fixator in distraction testing. In extreme cases, the use of reinforcement or monoaxial systems which do not fail even at 360 N is a better option. In torsional testing, the 2 pin external fixator is stiffer than the pedicle screw systems.

摘要

目的。比较单轴螺钉和多轴螺钉在皮下前路骨盆固定中的应用。方法。四个不同的组,每组有5个结构,在弹性范围内进行牵张测试。完成后,对3个组件在弹性范围内进行扭转测试,2个测试至扭转失效,3个测试至牵张失效。结果。在牵张测试中,椎弓根螺钉系统(单轴4.008±0.113 Nmm,Click-x 3.638±0.108 Nmm;Pangea 3.634±0.147 Nmm)比外固定系统(2.882±0.054 Nmm)具有更高刚度。在失效测试中,单轴椎弓根螺钉系统(360 N)比外固定装置(160 N)更强,多轴装置在牵张大于4 cm时失效(Click-x为157 N或Pangea为138 N)。外固定装置比所有椎弓根系统具有更高的峰值扭矩和扭转刚度。在扭转测试中,所有结构的屈服强度相同。结论。在牵张测试中,用多轴或单轴椎弓根螺钉构建的内固定装置比双针外固定器更具刚性。在极端情况下,使用即使在360 N时也不会失效的加强或单轴系统是更好的选择。在扭转测试中,双针外固定器比椎弓根螺钉系统更具刚性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b92/3866886/7d756c1b88c4/AOP2013-683120.001.jpg

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