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Surfaces for modeling arteries in virtual reality simulators

机译:虚拟现实模拟器中的动脉建模曲面

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We propose a surface model that can be used as part of an internet based educational medical simulator to train physicians in cardiovascular interventions. This is the first step towards building a real device which can be placed in a remote laboratory and operated upon by physicians from the comfort of their homes. The model assembles arteries and has planar segmentation to increase efficiency of the collision-detection algorithm. It is based on Sweep Surfaces and can be extended to T- and Y-like bifurcations with small mesh deformations. We also describe a continuous force vector field, representing the interaction between the catheter and the surface. The computation time is almost unaffected when the resolution of the artery is increased, and the algorithm allows real-time executions which are very important for remote learning.
机译:我们提出了一种表面模型,可作为基于互联网教育医疗模拟器的一部分,以培训心血管干预的医生。这是建立一个真实装置的第一步,该装置可以放在远程实验室中,并由医生从其家中的舒适度操作。模型组装动脉并具有平面分割,以提高碰撞检测算法的效率。它基于扫描表面,并且可以扩展到具有小网状变形的T-和Y形分叉。我们还描述了一种连续的力矢量场,表示导管和表面之间的相互作用。当动脉分辨率增加时,计算时间几乎不受影响,并且该算法允许对远程学习非常重要的实时执行。

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