Needle insertion modeling and simulation

S. DiMaio, S. Salcudean
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引用次数: 503

Abstract

A methodology for estimating the force distribution that occurs along a needle shaft during insertion is described. An experimental system for measuring planar tissue phantom deformation during needle insertions has been developed and is presented. A two-dimensional linear elastostatic material model, discretised using the finite element method, is used to derive contact force information that is not directly measurable. This approach provides a method for quantifying the needle forces and soft tissue deformations that occur during general needle trajectories in multiple dimensions. The needle force distribution is used for graphical and haptic real-time simulations of needle insertion. Since the force displacement relationship is required only along the needle, a condensation technique is shown to achieve very fast interactive simulations. Stiffness matrix changes corresponding to changes in boundary conditions and material coordinate frames are performed using low-rank matrix updates.
针插入建模与仿真
描述了一种估计针轴插入过程中受力分布的方法。介绍了一种测量针刺过程中平面组织模态变形的实验系统。一个二维线性弹性静力材料模型,使用有限元方法离散,用于导出接触力信息,这是不可直接测量的。这种方法提供了一种量化针刺力和软组织变形的方法,这些变形发生在多维的一般针刺轨迹中。针刺力分布用于针刺过程的图形和触觉实时仿真。由于力位移关系只需要沿着针,冷凝技术被证明可以实现非常快速的交互模拟。通过低秩矩阵更新实现边界条件和材料坐标系变化所对应的刚度矩阵变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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