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Analysis of Bone Remodeling Under Piezoelectricity Effects Using Boundary Elements

机译:压电效应下骨重塑的边界元分析

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摘要

Piezoelectric materials exhibit a response to mechanical-electrical coupling,which represents an important contribution to the electrical-mechanical interaction in bone remodeling process.Therefore,the study of the piezoelectric effect on bone remodeling has high interest in applied biomechanics.The effects of mechano-regulation and electrical stimulation on bone healing are explained.The Boundary Element Method (BEM) is used to simulate piezoelectric effects on bones when sheafing forces are applied to collagen fibers to make them slip past each other.The piezoelectric fundamental solutions are obtained by using the Radon transform.The Dual Reciprocity Method (DRM) is used to simulate the particular solutions in time-dependent problems.BEM analysis showed the strong influence of electrical stimulation on bone remodeling.The examples discussed in this work showed that,as expected,the electrically loaded bone surfaces improved the bone deposition.BEM results confirmed previous findings obtained by using the Finite Element Method (FEM).This work opens very promising doors in biomechanics research,showing that mechanical loads can be replaced,in part,by electrical charges that stimulate strengthening bone density.The obtained results herein are in good agreement with those found in literature from experimental testing and/or other simulation approaches.
机译:压电材料表现出对机电耦合的响应,这对骨骼重塑过程中的机电相互作用起着重要的作用。因此,压电对骨骼重塑作用的研究在应用生物力学中引起了广泛的兴趣。解释了调节和电刺激对骨骼愈合的作用。边界元方法(BEM)用于模拟对胶原纤维施加剪切力以使其相互滑过时对骨骼的压电效应。 Radon变换。使用对偶互易方法(DRM)来模拟时变问题中的特定解决方案.BEM分析表明电刺激对骨骼重构具有强大的影响。本工作中讨论的示例表明,正如预期的那样,电刺激BEM结果证实了先前的发现通过有限元方法(FEM)获得的结果。这项工作为生物力学研究打开了非常有前途的大门,表明可以通过刺激增强骨密度的电荷部分代替机械载荷。通过实验测试和/或其他模拟方法在文献中发现的那些。

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  • 来源
    《仿生工程学报(英文版)》 |2017年第4期|659-671|共13页
  • 作者单位

    National Institute of Bioengineering, Central University of Venezuela, Caracas, Venezuela;

    International Center for Numerical Methods in Engineering(CIMNE), Polytechnic University of Catalonia, Barcelona, Spain;

    National Institute of Bioengineering, Central University of Venezuela, Caracas, Venezuela;

    Virtual Rooms Program(CIMNE), Polytechnic University of Catalonia, Barcelona, Spain;

    Laboratory of Biomimetics, Group of Mechanobiology of Organs and Tissues, Biotechnology Institute, Department of Mechanical Engineering and Mechatronics, National University of Colombia, Bogotá, Colombia;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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