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A FEM Model for Interactive Simulation of Guide Wire Navigation in Moving Vascular Structures

机译:移动血管结构中导线导航交互式仿真的有限元模型

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In this paper a FEM model is proposed to simulate the guide wire navigation procedure in moving vascular structures. The virtual instruments are discretized with the multi-body representation, while the moving vascular structures are represented by a sequence of binary volumes segmented from the patient's data sets. The corresponding potential fields can be obtained by applying distance transform to the dynamic volumes. The collision and interaction between instruments and the moving vascular structures can be efficiently simulated with the potential fields and the FEM model, which drastically reduce the complexity of computation and makes interactive simulation possible. Comparing with mesh-based methods, the approach is both efficient and robust. Experimental results show the approach significantly improves the performance of simulation, especially in the circumstance of guide wire navigation in moving vessels.
机译:在本文中,提出了一个有限元模型来模拟移动血管结构中的导丝导航过程。虚拟仪器通过多体表示离散化,而移动的血管结构由从患者数据集中分割出的一系列二进制量表示。可以通过对动态体积应用距离变换来获得相应的势场。利用势场和FEM模型可以有效地模拟器械与运动的血管结构之间的碰撞和相互作用,从而大大降低了计算的复杂度,并使交互式模拟成为可能。与基于网格的方法相比,该方法既高效又稳健。实验结果表明,该方法显着提高了仿真性能,特别是在动船中导丝导航的情况下。

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