首页> 外文期刊>Journal of pediatric orthopaedics >Biomechanical comparison of flexible stainless steel and titanium nails with external fixation using a femur fracture model.
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Biomechanical comparison of flexible stainless steel and titanium nails with external fixation using a femur fracture model.

机译:使用股骨骨折模型进行外固定的柔性不锈钢和钛钉的生物力学比较。

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摘要

There are several options available for surgical stabilization of pediatric femoral shaft fractures. The purpose of this study was to compare the stability afforded by Ender stainless steel nails, titanium elastic nails, and one-plane unilateral external fixators for the fixation using a synthetic adolescent midshaft femur fracture model. The anterior-posterior (sagittal plane) bending, lateral (coronal plane) bending, torsional, and axial stiffness values were calculated using 6 different fixation configurations. These included pairs of 3.5-mm-diameter Ender nails with and without distal locking, 3.5- and 4.0-mm-diameter titanium elastic nails as well as single- and double-stacked monolateral external fixators. Eight synthetic femur models, 4 each with simulated transverse and comminuted fracture patterns, were sequentially tested for stability afforded by the various fracture fixation configurations. External fixation exhibited significantly greater control of anterior-posterior angulation compared with all flexible-nailing systems. Although Ender nails were slightly superior to titanium nails in control of sagittal plane angulation, this was not statistically significant. Compared with the external fixation constructs, all 4 flexible nail constructs demonstrated higher torsional stability. For prevention of axial shortening, all fixation methods were similar for the transverse fracture pattern, whereas external fixation was superior to flexible nails in the comminuted fracture model. No significant benefit was demonstrated with double stacking of external fixators. These findings may help guide clinicians choose the optimal fixation method for treatment of pediatric femoral shaft fractures.
机译:小儿股骨干骨折的手术稳定治疗有几种选择。这项研究的目的是比较Ender不锈钢钉,钛弹性钉和单平面单侧外固定器提供的稳定性,以使用合成的青少年中轴股骨骨折模型进行固定。使用6种不同的固定配置来计算前后弯曲(矢状面),横向弯曲(冠状面),扭转和轴向刚度。其中包括成对的3.5毫米直径Ender钉(带和不带远端锁定),直径3.5毫米和4.0毫米的钛弹性钉,以及单堆叠和双堆叠单侧外固定架。依次测试了八个合成的股骨模型,每个模型具有模拟的横向和粉碎性骨折模式,分别进行了各种骨折固定配置所提供的稳定性的测试。与所有柔性钉系统相比,外固定表现出明显更好的对前后角度的控制。尽管Ender钉在控制矢状面角度方面略胜于钛钉,但在统计学上无统计学意义。与外部固定结构相比,所有4种柔性指甲结构均显示出更高的扭转稳定性。为了防止轴向缩短,横向骨折方式的所有固定方法均相似,而在粉碎性骨折模型中,外固定优于柔性钉。外部固定器的双重堆叠并没有显示出明显的好处。这些发现可能有助于指导临床医生选择治疗小儿股骨干骨折的最佳固定方法。

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