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Augmented Reality Visualization for Thoracoscopic Spine Surgery

机译:胸腔镜脊柱手术的增强现实可视化

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We are developing an augmented reality (AR) image guidance system in which information derived from medical images is overlaid onto a video view of the patient. The centerpiece of the system is a head-mounted display custom fitted with two miniature color video cameras that capture the stereo view of the scene. Medical graphics is overlaid onto the video view and appears firmly anchored in the scene, without perceivable time lag or jitter. We have been testing the system for different clinical applications. In this paper we discuss minimally invasive thoracoscopic spine surgery as a promising new orthopedic application. In the standard approach, the thoracoscope - a rigid endoscope - provides visual feedback for the minimally invasive procedure of removing a damaged disc and fusing the two neighboring vertebrae. The navigation challenges are twofold. From a global perspective, the correct vertebrae on the spine have to be located with the inserted instruments. From a local perspective, the actual spine procedure has to be performed precisely. Visual feedback from the thoracoscope provides only limited support for both of these tasks. In the augmented reality approach, we give the surgeon additional anatomical context for the navigation. Before the surgery, we derive a model of the patient's anatomy from a CT scan, and during surgery we track the location of the surgical instruments in relation to patient and model. With this information, we can help the surgeon in both the global and local navigation, providing a global map and 3D information beyond the local 2D view of the thoracoscope. Augmented reality visualization is a particularly intuitive method of displaying this information to the surgeon. To adapt our augmented reality system to this application, we had to add an external optical tracking system, which works now in combination with our head-mounted tracking camera. The surgeon's feedback to the initial phantom experiments is very positive.
机译:我们正在开发一种增强现实(AR)图像引导系统,其中将从医学图像中获取的信息叠加到患者的视频视图上。该系统的核心是定制的头戴式显示器,配有两个微型彩色摄像机,可捕捉场景的立体图。医学图形将覆盖在视频视图上,并牢固地固定在场景中,而不会出现时间延迟或抖动。我们一直在为不同的临床应用测试该系统。在本文中,我们讨论了微创胸腔镜脊柱外科手术作为一种有希望的新型骨科应用。在标准方法中,胸腔镜-刚性内窥镜-为去除受损椎间盘并融合两个相邻椎骨的微创程序提供视觉反馈。导航挑战是双重的。从全局角度来看,必须使用插入的器械来定位脊柱上的正确椎骨。从局部角度来看,必须精确执行实际的脊柱手术。胸腔镜的视觉反馈仅对这两项任务提供有限的支持。在增强现实方法中,我们为外科医生提供了更多的导航解剖环境。手术之前,我们从CT扫描中得出患者的解剖模型,而在手术过程中,我们会跟踪手术器械相对于患者和模型的位置。有了这些信息,我们可以帮助外科医生进行全球和本地导航,在胸腔镜的本地2D视图之外提供全局地图和3D信息。增强现实可视化是向医生显示此信息的一种特别直观的方法。为了使我们的增强现实系统适应该应用,我们必须添加一个外部光学跟踪系统,该系统现在可以与我们的头戴式跟踪摄像机结合使用。外科医生对最初的体模实验的反馈是非常积极的。

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