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Biomechanical evaluation of a novel dualplate fixation method for proximal humeral fractures without medial support

机译:一种新型的双板固定方法治疗肱骨近端骨折而无内侧支撑的生物力学评估

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BackgroundComminuted fractures of the proximal humerus are generally treated with the locking plate system, and clinical results are satisfactory. However, unstable support of the medial column results in varus malunion and screw perforation. We designed a novel medial anatomical locking plate (MLP) to directly support the medial column. Theoretically, the combined application of locking plate and MLP (LPMP) would directly provide strong dual-column stability. We hypothesized that the LPMP could provide greater construct stability than the locking plate alone (LP), locking plate combined with a fibular graft (LPSG), and locking plate combined with a distal radius plate (LPDP). MethodsLP, LPMP, LPSG, and LPDP implants were instrumented into the finite element model of a proximal humeral fracture. Axial, shear, and rotational loads were applied to the models under normal and osteoporotic bone conditions. The whole simulation was repeated five times for each fixator. To assess the biomechanical characteristics, the construct stiffness, fracture micromotion, stress distribution, and neck-shaft angle (NSA) were compared. ResultsThe LPMP group showed significantly greater integral and regional construct stiffness, and endured less von Mises stresses, than the other three fixation methods. The stresses on the lateral locking plate were dispersed by the MLP. The LPMP group showed the least change in NSA. ConclusionsFrom the finite element viewpoint, the LPMP method provided both lateral and medial direct support. The LPMP system was effective in treating proximal humeral fracture with an unstable medial column.
机译:背景技术肱骨近端粉碎性骨折一般采用锁定板系统治疗,临床效果满意。但是,内侧柱的不稳定支撑会导致内翻畸形和螺钉穿孔。我们设计了一种新颖的内侧解剖锁定板(MLP)来直接支撑内侧柱。从理论上讲,锁定板和MLP(LPMP)的组合应用将直接提供强大的双柱稳定性。我们假设LPMP可以提供比单独的锁定板(LP),结合腓骨移植的锁定板(LPSG)和结合radius骨远端板(LPDP)的锁定结构更好的稳定性。方法将LP,LPMP,LPSG和LPDP植入物植入肱骨近端骨折的有限元模型中。在正常和骨质疏松的骨骼条件下,将轴向,剪切和旋转载荷应用于模型。每个固定器重复整个模拟五次。为了评估生物力学特征,比较了结构刚度,断裂微动,应力分布和颈轴角(NSA)。结果LPMP组显示出比其他三种固定方法明显更高的整体和区域构造刚度,并且承受的von Mises应力较小。 MLP分散了横向锁定板上的应力。 LPMP组的NSA变化最小。结论从有限元的角度来看,LPMP方法提供了外侧和内侧直接支撑。 LPMP系统使用不稳定的内侧柱可有效治疗肱骨近端骨折。

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