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首页> 外文期刊>Haptics, IEEE Transactions on >Direct Visuo-Haptic 4D Volume Rendering Using Respiratory Motion Models
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Direct Visuo-Haptic 4D Volume Rendering Using Respiratory Motion Models

机译:使用呼吸运动模型直接进行Visuo-Haptic 4D体绘制

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摘要

This article presents methods for direct visuo-haptic 4D volume rendering of virtual patient models under respiratory motion. Breathing models are computed based on patient-specific 4D CT image data sequences. Virtual patient models are visualized in real-time by ray casting based rendering of a reference CT image warped by a time-variant displacement field, which is computed using the motion models at run-time. Furthermore, haptic interaction with the animated virtual patient models is provided by using the displacements computed at high rendering rates to translate the position of the haptic device into the space of the reference CT image. This concept is applied to virtual palpation and the haptic simulation of insertion of a virtual bendable needle. To this aim, different motion models that are applicable in real-time are presented and the methods are integrated into a needle puncture training simulation framework, which can be used for simulated biopsy or vessel puncture in the liver. To confirm real-time applicability, a performance analysis of the resulting framework is given. It is shown that the presented methods achieve mean update rates around 2,000 Hz for haptic simulation and interactive frame rates for volume rendering and thus are well suited for visuo-haptic rendering of virtual patients under respiratory motion.
机译:本文介绍了在呼吸运动下对虚拟患者模型进行直接视觉4D体绘制的方法。呼吸模型是基于患者特定的4D CT图像数据序列计算的。通过基于射线投射的时变位移场扭曲的参考CT图像的实时可视化虚拟患者模型,该时变位移场在运行时使用运动模型进行计算。此外,通过使用以高渲染速率计算的位移将触觉设备的位置转换到参考CT图像的空间中,可以提供与动画虚拟患者模型的触觉交互。该概念适用于虚拟触诊和虚拟可弯曲针头插入的触觉模拟。为此,提出了可实时应用的不同运动模型,并将这些方法集成到了穿刺训练模拟框架中,该框架可用于模拟活检或肝脏中的血管穿刺。为了确认实时适用性,给出了所得框架的性能分析。结果表明,所提出的方法对于触觉模拟实现了平均更新速率约2,000 Hz,对于体积渲染实现了交互式帧速率,因此非常适合在呼吸运动下虚拟患者的视觉-触觉渲染。

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