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Non-standard bone simulation: interactive numerical analysis by computational steering

机译:非标准骨模拟:通过计算导向进行交互式数值分析

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摘要

Numerous numerical methods have been developed in an effort to accurately predict stresses in bones. The largest group are variants of the h-version of the finite element method (h-FEM), where low order Ansatz functions are used. By contrast, we3 investigate a combination of high order FEM and a fictitious domain approach, the finite cell method (FCM). While the FCM has been verified and validated in previous publications, this article proposes methods on how the FCM can be made computationally efficient to the extent that it can be used for patient specific, interactive bone simulations. This approach is called computational steering and allows to change input parameters like the position of an implant, material or loads and leads to an almost instantaneous change in the output (stress lines, deformations). This direct feedback gives the user an immediate impression of the impact of his actions to an extent which, otherwise, is hard to obtain by the use of classical non interactive computations. Specifically, we investigate an application to pre-surgical planning of a total hip replacement where it is desirable to select an optimal implant for a specific patient. Herein, optimal is meant in the sense that the expected postoperative stress distribution in the bone closely resembles that before the operation.
机译:为了精确地预测骨骼中的压力,已经开发出许多数值方法。最大的一组是有限元方法(h-FEM)的h版本的变体,其中使用了低阶Ansatz函数。相比之下,我们研究了高阶FEM和虚拟域方法(有限元方法(FCM))的组合。尽管FCM在先前的出版物中已得到验证和验证,但本文提出了一些方法,以使FCM可以有效地进行计算,从而可用于特定于患者的交互式骨骼模拟。这种方法称为计算转向,它允许更改输入参数,例如植入物的位置,材料或负载,并导致输出中的瞬时变化(应力线,变形)。这种直接反馈使用户对他的动作的影响有直接的印象,否则将很难通过使用传统的非交互式计算来获得。具体而言,我们调查了需要为特定患者选择最佳植入物的全髋关节置换术的手术前规划应用。在此,最佳是指在骨中预期的术后应力分布与手术之前的应力分布非常相似。

著录项

  • 来源
    《Computing and visualization in science》 |2011年第5期|p.207-216|共10页
  • 作者单位

    Chair for Computation in Engineering, Faculty of Civil Engineering and Geodesy, Technische Universitaet Muenchen,Munich, Germany;

    Chair for Computation in Engineering, Faculty of Civil Engineering and Geodesy, Technische Universitaet Muenchen,Munich, Germany;

    Numerische Strukturanalyse mit Anwendungen in der Schiffstechnik (M-10), Technische Universitat Hamburg-Harburg, Hamburg, Germany;

    Chair for Computation in Engineering, Faculty of Civil Engineering and Geodesy, Technische Universitaet Muenchen,Munich, Germany;

    Klinik u. Poliklinik fur Orthopadie u. Sportorthopaedie am Klinikum Rechts der Isar, Technische Universitat Munchen, Munich, Germany;

    Klinik u. Poliklinik fur Orthopadie u. Sportorthopaedie am Klinikum Rechts der Isar, Technische Universitat Munchen, Munich, Germany;

    Chair for Computation in Engineering, Faculty of Civil Engineering and Geodesy, Technische Universitaet Muenchen,Munich, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    surgical planning; computational steering; finite cell method; total hip replacement;

    机译:手术计划;计算导向有限元法全髋关节置换;

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