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Non-photorealistic rendering of virtual implant models for computer assisted fluoroscopy based surgical procedures

机译:基于计算机辅助透视的外科手术的虚拟植入模型的非黑质呈现

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Introduction: Surgical navigation systems visualize the positions and orientations of surgical instruments and implants as graphical overlays onto a medical image of the operated anatomy on a computer monitor. The orthopaedic surgical navigation systems could be categorized according to the image modalities that are used for the visualization of surgical action. In the so-called CT-based systems or 'surgeon-defined anatomy' based systems, where a 3D volume or surface representation of the operated anatomy could be constructed from the preoperatively acquired tomographic data or through intraoperatively digitized anatomy landmarks, a photorealistic rendering of the surgical action has been identified to greatly improve usability of these navigation systems [1]. However, this may not hold true when the virtual representation of surgical instruments and implants is superimposed onto 2D projection images in a fluoros-copy-based navigation system due to the so-called image occlusion problem. Image occlusion occurs when the field of view of the fiuoroscopic image is occupied by the virtual representation of surgical implants or instruments. In these situations, the surgeon may miss part of the image details, even if transparency and/or wire-frame rendering is used.
机译:简介:手术导航系统可视化外科手术器械的位置和方向,植入物作为图形叠加在计算机监视器上操作的解剖学的医学图像上。骨科手术导航系统可以根据用于可视化手术作用的图像方式进行分类。在所谓的基于CT的系统或基于外科医生定义的解剖学的系统中,在那里可以通过术前获取的断层数据或通过脑内数字化解剖学标志来构建操作解剖学的3D体积或表面表示,其自体化学呈现已经确定了外科手术,以大大提高这些导航系统的可用性[1]。然而,当由于所谓的图像遮挡问题,当外科仪器和植入物的虚拟表示叠加到荧光复制的导航系统中,这可能不会保持真实。当Fiuoroscopic图像的视野被外科植入物或仪器的虚拟表示占据射击的视野时,发生图像闭塞。在这些情况下,即使使用透明度和/或线帧渲染,外科医生也可能错过部分图像细节。

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