首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Biomechanical features of six design of the delta external fixator for treating Pilon fracture: a finite element study
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Biomechanical features of six design of the delta external fixator for treating Pilon fracture: a finite element study

机译:用于治疗Pilon骨折的Delta外固定器六种设计的生物力学特征:有限元研究

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摘要

Pilon fractures can be caused by high-energy vertical forces which may result in long-term patient immobilization. Many experts in orthopedic surgery recommend the use of a Delta external fixator for type III Pilon fracture treatment. This device can promote immediate healing of fractured bone, minimizing the rate of complications as well as allowing early mobilization. The characteristics of different types of the Delta frame have not been demonstrated yet. By using the finite element method, this study was conducted to determine the biomechanical characteristics of six different configurations (Model 1 until Model 6). CT images from the lower limb of a healthy human were used to reconstruct three-dimensional models of foot and ankle bones. All bones were assigned with isotropic material properties and the cartilages were assigned to exhibit hyperelasticity. A linear link was used to simulate 37 ligaments at the ankle joint. Axial loads of 70 and 350N were applied at the proximal tibia to simulate the stance and swing phase. The metatarsals and calcaneus were fixed distally in order to prevent rigid body motion. A synthetic ankle bone was used to validate the finite element model. The simulated results showed that Delta3 produced the highest relative micromovement (0.09mm, 7m) during the stance and swing phase, respectively. The highest equivalent von Mises stress was found at the calcaneus pin of the Delta4 (423.2MPa) as compared to others. In conclusion, Delta1 external fixator was the most favorable option for type III Pilon fracture treatment.
机译:皮坡骨折可能是由高能垂直力引起的,这可能导致长期患者固定化。矫形外科的许多专家建议使用Delta外固定器,用于III型Pilon骨折处理。该装置可以立即促进骨折骨骼的愈合,最大限度地减少并发症的速度以及允许早期动员。尚未对不同类型的Delta帧进行特征。通过使用有限元方法,进行该研究以确定六种不同配置的生物力学特性(型号1直到型号6)。来自健康人的下肢的CT图像用于重建脚和踝骨的三维模型。所有骨骼都分配各向同性物质性质,并分配软骨以表现出高弹性。用于模拟踝关节的37个韧带的线性链路。在近端胫骨上施加70和350n的轴向载荷,以模拟姿势和摆动阶段。跖骨和钙盖被远端固定,以防止刚体运动。合成踝骨用于验证有限元模型。模拟结果表明,Delta3分别在姿势和摆动阶段期间产生了最高的相对小微控制(0.09mm,7m)。与他人相比,在Delta4(423.2MPa)的Calcaneus Pin处发现了最高等效的von误解压力。总之,Delta1外固定器是III型裂缝骨折处理的最有利选择。

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