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首页> 外文期刊>The Journal of Bone and Joint Surgery. American Volume >Far cortical locking can improve healing of fractures stabilized with locking plates
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Far cortical locking can improve healing of fractures stabilized with locking plates

机译:远侧皮质锁定可改善用锁定板稳定的骨折的愈合

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Background: Locked bridge plating relies on secondary bone healing, which requires interfragmentary motion for callus formation. This study evaluated healing of fractures stabilized with a locked plating construct and a far cortical locking construct, which is a modified locked plating approach that promotes interfragmentary motion. The study tested whether far cortical locking constructs can improve fracture-healing compared with standard locked plating constructs. Methods: In an established ovine tibial osteotomy model with a 3-mm gap size, twelve osteotomies were randomly stabilized with locked plating or far cortical locking constructs applied medially. The far cortical locking constructs were designed to provide 84% lower stiffness than the locked plating constructs and permitted nearly parallel gap motion. Fracture-healing was monitored on weekly radiographs. After the animals were killed at week 9, healed tibiae were analyzed by computed tomography, mechanical testing in torsion, and histological examination. Results: Callus on weekly radiographs was greater in the far cortical locking constructs than in the locked plating constructs. At week 9, the far cortical locking group had a 36% greater callus volume (p = 0.03) and a 44% higher bone mineral content (p = 0.013) than the locked plating group. Callus in the locked plating specimens was asymmetric, having 49% less bone mineral content in the medial callus than in the lateral callus (p = 0.003). In far cortical locking specimens, medial and lateral callus had similar bone mineral content (p = 0.91). The far cortical locking specimens healed to be 54% stronger in torsion (p = 0.023) and sustained 156% greater energy to failure in torsion (p < 0.001) than locked plating specimens. Histologically, three of six locked plating specimens had deficient bridging across the medial cortex, while all remaining cortices had bridged. Conclusions: Inconsistent and asymmetric callus formation with locked plating constructs is likely due to their high stiffness and asymmetric gap closure. By providing flexible fixation and nearly parallel interfragmentary motion, far cortical locking constructs form more callus and heal to be stronger in torsion than locked plating constructs. Clinical Relevance: Far cortical locking fixation may be advisable for stiffness reduction of locked bridge plating constructs to improve fracture-healing.
机译:背景:锁定桥板依赖于继发性骨愈合,这需要碎片间运动来形成愈伤组织。这项研究评估了用锁定钢板和远皮质锁定钢板稳定的骨折的愈合情况,这是一种改良的锁定钢板方法,可促进碎片间运动。该研究测试了远侧皮质锁定结构与标准锁定板结构相比是否能改善骨折愈合。方法:在已建立的,间隙大小为3 mm的绵羊胫骨截骨模型中,采用锁定钢板或内侧远侧皮质锁定结构随机将十二个截骨术稳定。远皮质锁定结构被设计为提供比锁定板结构低84%的刚度,并允许几乎平行的间隙运动。每周X光片监测骨折愈合情况。在第9周处死动物后,通过计算机断层扫描,扭转机械测试和组织学检查对愈合的胫骨进行分析。结果:在远侧皮质锁定结构中,每周X光片上的愈伤组织大于在锁定的板结构中。在第9周,远侧皮质锁定组的骨call量(p = 0.03)比锁定钢板组高36%(p = 0.013),骨矿物质含量(p = 0.013)高44%。锁定板样本中的愈伤组织是不对称的,内侧愈伤组织中的骨矿物质含量比外侧愈伤组织中的骨矿物质含量低49%(p = 0.003)。在远皮层锁定标本中,内侧和外侧骨call的骨矿物质含量相似(p = 0.91)。与锁定板相比,远侧皮质锁定标本的扭转强度提高了54%(p = 0.023),并且扭转失败的能量维持了156%(p <0.001)。从组织学的角度来看,六个锁定平板样本中的三个在内侧皮质上桥接不足,而所有其余的皮质都桥接了。结论:锁定的镀层结构形成的不一致和不对称的愈伤组织可能是由于其高刚度和不对称的间隙闭合造成的。通过提供灵活的固定和近乎平行的片段间运动,远皮层锁定结构可形成更多的愈伤组织,并比锁定的板状结构能更强地愈合。临床意义:建议采用远侧皮质锁定固定以减少锁定桥板结构的刚度,以改善骨折愈合。

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