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A Novel FEM-Based Numerical Solver for Interactive Catheter Simulation in Virtual Catheterization

机译:虚拟导管术中基于FEM的交互式导管模拟的新型数值解算器

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Virtual reality-based simulators are very helpful for trainees to acquire the skills of manipulating catheters and guidewires during the vascular interventional surgeries. In the development of such a simulator, however, it is a great challenge to realistically model and simulate deformable catheters and guidewires in an interactive manner. We propose a novel method to simulate the motion of catheters or guidewires and their interactions with patients' vascular system. Our method is based on the principle of minimal total potential energy. We formulate the total potential energy in the vascular interventional circumstance by summing up the elastic energy deriving from the bending of the catheters or guidewires, the potential energy due to the deformation of vessel walls, and the work by the external forces. We propose a novel FEM-based approach to simulate the deformation of catheters and guidewires. The motion of catheters or the guidewires and their responses to every input from the interventionalist can be calculated globally. Experiments have been conducted to validate the feasibility of the proposed method, and the results demonstrate that our method can realistically simulate the complex behaviors of catheters and guidewires in an interactive manner.
机译:基于虚拟现实的模拟器对于受训人员在血管介入手术中掌握操纵导管和导丝的技能非常有帮助。然而,在这种模拟器的开发中,以交互方式现实地建模和模拟可变形导管和导线是一个巨大的挑战。我们提出了一种新颖的方法来模拟导管或导丝的运动及其与患者血管系统的相互作用。我们的方法基于最小总势能原理。我们通过对导管或导丝弯曲产生的弹性能,血管壁变形产生的势能以及外力做功的总和求和,得出血管介入情况下的总势能。我们提出了一种新颖的基于FEM的方法来模拟导管和导丝的变形。导管或导丝的运动及其对介入治疗师每次输入的响应都可以整体计算出来。通过实验验证了该方法的可行性,结果表明我们的方法能够以交互方式逼真地模拟导管和导丝的复杂行为。

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