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The point collocation-based method of finite spheres (PCMFS) for real time surgery simulation

机译:基于点配点的有限域方法(PCMFS)用于实时手术仿真

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Simulation based medical training requires real time interactivity. While real time graphical display requires an update rate of 30 Hz, real time force feedback requires a much higher update rate of 1 kHz. The demand for extreme computational efficiency delimits the complexity of the computational models that can be used for simulation. In this paper we develop two specializations of a meshfree technique, the point collocation-based method of finite spheres (PCMFS), for real time simulation of soft tissues during minimally invasive surgery (MIS). Simulations using realistic three-dimensional geometries are presented and are compared with solutions using more traditional finite element methods in terms of speed and accuracy. The integration of the proposed schemes into a practical surgical simulation system is also discussed.
机译:基于模拟的医学培训需要实时交互。实时图形显示需要30 Hz的更新速率,而实时力反馈需要1 kHz的更高更新速率。对极端计算效率的需求限制了可用于仿真的计算模型的复杂性。在本文中,我们开发了两种无网格技术专业化技术,即基于点配置的有限球体方法(PCMFS),用于在微创外科手术(MIS)中实时模拟软组织。提出了使用逼真的三维几何图形进行的仿真,并将其与使用更传统的有限元方法的解决方案进行了速度和精度方面的比较。还讨论了将建议的方案集成到实际的外科手术仿真系统中。

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