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Simulation of the Effects of Electric Loadings on Bone Surface Remodeling

机译:电载荷对骨表面重塑影响的模拟

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In recent decades, bone fracture healing methods have been the subject of many researches. According to many clinical studies, it is proved that bone healing can be promoted by application of electric and electromagnetic field in specific amplitudes, wave shapes and frequencies.In addition to clinical experiments, many mechanical models have been proposed to simulate effects of mechanical loadings on bone healing. But only a few of these models considered the electric properties of bone. In this paper, a model of piezoelectromagnetic bone has been simulated and modified based on electromagnetoelastic theory. The effects of pulsed and sine waveforms, and different constant electric and magnetic loadings on bone are investigated. It is demonstrated that electric and magnetic loadings affect bone surface remodelling. Besides, the effects of pulse width of electric and magnetic fields on bone remodelling were evaluated.Although this model can describe the process of bone surface remodelling under electric and magnetic loadings, it cannot explain some events in bone surface remodelling such as importance of rest durations after each physiotherapeutic procedure.
机译:近几十年来,骨折愈合方法已成为许多研究的主题。根据许多临床研究,已证明可以通过施加特定幅度,波形和频率的电场和电磁场来促进骨愈合。 除了临床实验,还提出了许多力学模型来模拟机械载荷对骨骼愈合的影响。但是,这些模型中只有少数模型考虑了骨骼的电特性。本文基于电磁弹性理论对压电骨模型进行了仿真和修正。研究了脉冲波形和正弦波形以及不同的恒定电和磁负载对骨骼的影响。结果表明,电和磁载荷会影响骨表面重塑。此外,还评估了电场和磁场的脉冲宽度对骨骼重塑的影响。 尽管此模型可以描述在电磁负载下的骨表面重塑过程,但它无法解释某些骨表面重塑事件,例如每次物理治疗过程后休息时间的重要性。

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