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Handling occlusion in Augmented Reality surgical training based instrument tracking

机译:基于增强现实手术训练的器械跟踪中的遮挡处理

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In the medical field, research studies have shown that Augmented Reality (AR) based surgical training has a good potential in making the learning process more active. However, lack of displaying the correct occlusion between the real surgical instrument and virtual organ greatly limits the trainee surgeons understanding and reduces the overall system usability. In this paper, we propose a novel mutual occlusion handling method based on surgical instrument tracking and 3D positioning approach in AR environment. Therefore, we introduce a monocular image processing based paradigm that aims at (1) tracking the instrument using both background subtraction and Hough transform method (2) calculating the 3D position of the instrument using the geometry of perspective projection (3) comparing the 3D coordinates of the real instrument with the virtual organ to achieve a realistic AR rendering system. The experimental results show that our approach is highly accurate and can handle the mutual occlusion automatically in real time.
机译:在医学领域,研究表明基于增强现实(AR)的外科培训在使学习过程更加活跃方面具有良好的潜力。然而,在真正的手术器械和虚拟器官之间缺乏正确的咬合显示,极大地限制了实习医生的理解,并降低了整个系统的可用性。在本文中,我们提出了一种在AR环境中基于手术器械跟踪和3D定位方法的相互咬合处理新方法。因此,我们介绍了一种基于单眼图像处理的范例,旨在(1)使用背景减法和霍夫变换方法跟踪仪器(2)使用透视投影的几何形状来计算仪器的3D位置(3)比较3D坐标用虚拟器官对真实乐器进行仿真,以实现逼真的AR渲染系统。实验结果表明,我们的方法是高精度的,并且可以实时自动地处理相互遮挡。

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