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首页> 外文期刊>Clinical biomechanics >Osteosynthesis of supracondylar humerus fractures in children: a biomechanical comparison of four techniques.
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Osteosynthesis of supracondylar humerus fractures in children: a biomechanical comparison of four techniques.

机译:儿童con上肱骨骨折的骨合成:四种技术的生物力学比较。

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BACKGROUND: Crossed k-wire osteosynthesis is a widely used procedure for displaced supracondylar humerus fractures in children, but the rate of secondary displacements is up to 31%. Alternative techniques including casts, elastic stable intramedullary nailing, and the fixateur extern, have been used, but there are no biomechanical data comparing these methods. We developed a biomechanical model to compare four osteosynthesis techniques for stabilizing supracondylar humerus fractures in children. METHODS: An osteotomy to simulate a fracture was made in a total of 32 adult cadaver humeri. The pseudofractures were then stabilized by crossed k-wires, elastic nailing, a fixateur extern with either k-wires, or Schanz screws. We measured the stiffness values in flexion and extension and torsion with static loading. The movements in cyclic loading were chosen to resemble the mechanism described in the development of a clinical cubitus varus. FINDINGS: No significant differences were found with static loading. With cyclic loading all methods showed an irreversible torsional deformation less than 20 degrees . Crossed k-wires and elastic nailing showed significantly lower reversible torsional deformation than the external fixateurs. INTERPRETATION: Our biomechanical data reveal that the crossed k-wires have the highest stiffness and lowest loss of reduction under cyclic loading. The external fixators proved to be good alternatives.
机译:背景:交叉k线骨固定术是儿童移位的sup上肱骨骨折的一种广泛使用的手术方法,但继发移位的比率高达31%。已经使用了替代技术,包括石膏,弹性稳定的髓内钉和fixateur extern,但尚无将这些方法进行比较的生物力学数据。我们开发了一个生物力学模型来比较四种稳定儿童s上肱骨骨折的骨合成技术。方法:对总共32名成人尸体肱骨进行了截骨模拟骨折。然后用交叉的k线,弹性钉,带有k线的固定器externate或Schanz螺钉使假骨折稳定。我们在静态载荷下测量了屈伸,扭转的刚度值。选择循环负荷的运动以类似于临床肘内翻发展中描述的机制。结果:静载荷没有发现显着差异。在循环载荷下,所有方法都表现出小于20度的不可逆扭转变形。交叉的k线和弹性钉显示的可逆扭转变形明显低于外固定器。解释:我们的生物力学数据表明,交叉的K线在循环载荷下具有最高的刚度和最小的还原损失。事实证明,外固定器是不错的选择。

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