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首页> 外文期刊>The Journal of trauma >Effects of hybrid plating with locked and nonlocked screws on the strength of locked plating constructs in the osteoporotic diaphysis.
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Effects of hybrid plating with locked and nonlocked screws on the strength of locked plating constructs in the osteoporotic diaphysis.

机译:带有锁定和非锁定螺钉的混合板对骨质疏松性骨干中锁定板结构强度的影响。

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摘要

BACKGROUND: Hybrid plating (HP) may improve fixation strength of locked plating (LP) constructs by combining the use of locked and nonlocked screws within a bone segment. This biomechanical study evaluated whether a hybrid bridge plating construct provides greater fixation strength than an all-locked construct in the osteoporotic diaphysis. METHODS: LP and HP constructs were applied to a validated surrogate of the osteoporotic femoral diaphysis in a bridge plating configuration. In LP constructs, plates were applied with three locking screws on each side of the fracture gap and remained 1 mm elevated. In HP constructs, plates were applied with two conventional screws complemented by a single locked screw on each side of the fracture. Constructs were tested under dynamic loading to failure in bending, torsion, and axial loading to analyze construct strength and failure mechanism in each loading mode. RESULTS: Compared with the LP construct, the HP construct was 7% stronger in bending (p = 0.17), 42% stronger in torsion (p < 0.001), and 7% weaker in axial compression (p = 0.003). In bending, constructs failed by periprosthetic fracture. In torsion, LP constructs failed by screw breakage, and HP constructs failed by periprosthetic fracture or breakage of the locking screw. In axial compression, all constructs failed by screw migration. CONCLUSIONS: HP delivered similar bending strength and higher torsional strength than an all-locked bridge plating construct, while causing only a small decrease in axial strength. It may therefore provide an attractive alternative to an all-locked construct for plate fixation in the osteoporotic diaphysis.
机译:背景:混合钢板(HP)可以通过结合使用在骨节段内使用锁定螺钉和非锁定螺钉来提高锁定板(LP)构造的固定强度。这项生物力学研究评估了在骨质疏松性骨干中杂合桥板构建物是否比全锁构建物提供更高的固定强度。方法:将LP和HP构建体应用于桥板构型的骨质疏松性股骨骨干的经验证的替代物。在LP构造中,在骨折间隙的每一侧用三个锁定螺钉施加板,并保持1 mm升高。在HP结构中,在骨折的每一侧均在钢板上施加两个常规螺钉并辅以单个锁定螺钉。在动态载荷下对结构进行了测试,以分析其在弯曲,扭转和轴向载荷下的破坏,以分析每种载荷模式下的结构强度和破坏机理。结果:与LP结构相比,HP结构的弯曲强度高7%(p = 0.17),扭转强度高42%(p <0.001),轴向压缩强度低7%(p = 0.003)。弯曲时,假体会因假体周围骨折而失效。在扭转中,LP结构因螺钉断裂而失效,HP结构因假体周围骨折或锁定螺钉断裂而失效。在轴向压缩中,所有构造都因螺钉移动而失效。结论:与全锁式桥梁镀层结构相比,HP提供了相似的抗弯强度和更高的抗扭强度,而轴向强度仅引起很小的下降。因此,它可以为全锁定构建体提供一个有吸引力的替代方案,用于将板固定在骨质疏松性骨干中。

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