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Static and dynamic analyses of fracture fixation bone-plate systems for different plate materials and dimensions

机译:不同板材和尺寸骨折固定骨板系统的静态和动态分析

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BACKGROUND:Various techniques have been developed in the treatment of fractures. One of these techniques is the internal fixation, which has an important place in practice. OBJECTIVE:In this study, fractured tibia bone has been treated with implants as numerically to investigate the stress behavior and the effect of plate material, shape and dimensions under pressure load. METHODS:The outer part of the bone is chosen as orthotropic and the inner part is chosen as isotropic material. The plate has been modeled to take the form of the bone surface and the finite element method has been used for numerical analysis. The effect of stress on bones and implants has been examined for 1% healing by changing the plate length, plate width and plate material. RESULTS:It has been observed that the increase in plate length decreases cortical bone stress until a specific length. On the other hand, the increase in plate width has increased the stress on the bone. CONCLUSIONS:It is important to form the appropriate plate surface to the bone surface in terms of compliance with the bones.
机译:背景:在治疗骨折中已经开发了各种技术。其中一个技术是内部固定,在实践中具有重要的位置。目的:在这项研究中,碎裂的胫骨骨头已经用植入物处理,以研究压力负荷在压力负荷下的应力行为和板材,形状和尺寸的影响。方法:骨的外部被选择为正向熵,内部部分被选自各向同性材料。板已经建模以采取骨表面的形式,有限元方法已被用于数值分析。通过改变板长度,板宽和板材,已经检查了应力对骨骼和植入物的影响。结果:已经观察到,板长度的增加降低了皮质骨应力,直到特定长度。另一方面,板宽的增加增加了骨骼上的应力。结论:在符合骨骼方面,重要的是将适当的板表面形成为骨表面。

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