首页> 外文会议>Robotics and Automation, 2004. Proceedings. ICRA '04. 2004 IEEE International Conference on >A computational technique for interactive needle insertions in 3D nonlinear material
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A computational technique for interactive needle insertions in 3D nonlinear material

机译:3D非线性材料中交互式针插入的计算技术

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We present a computational method for simulating needle insertions interactively in both 2D and 3D models of soft tissue. The approach is based on the Finite Element Method (FEM) and uses quasi-static stick-slip friction for needle/tissue interactions. The FEM equations are solved using an iterative method, and the mesh is refined adaptively near the needle trajectory. The boundary formed by the needle surface is not represented explicitly in the mesh, but its geometry is accounted for in the friction forces. This has the advantage that we can use a simple and therefore fast refinement scheme that is guaranteed to keep the mesh quality at the initial level. This approach can also be applied to the 3D situation as well as to nonlinear geometry and material models. We present results of computational experiments of the 2D simulation, and show promising samples of the 3D implementation.
机译:我们提出了一种在软组织的2D和3D模型中以交互方式模拟针头插入的计算方法。该方法基于有限元方法(FEM),并使用准静态的粘滑摩擦进行针头/组织相互作用。使用迭代方法求解FEM方程,并在针轨迹附近自适应调整网格。由针表面形成的边界在网格中未明确表示,但其几何形状是由摩擦力引起的。这样做的好处是我们可以使用一种简单且快速的优化方案,该方案可以确保将网格质量保持在初始水平。该方法还可以应用于3D情况以及非线性几何和材料模型。我们介绍2D模拟的计算实验结果,并展示3D实施的有希望的示例。

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