首页> 外文会议>International Conference on Robot, Vision and Signal Processing >Stereoscopic Augmented Reality for Single Camera Endoscope Using Optical Tracker: A Study on Phantom
【24h】

Stereoscopic Augmented Reality for Single Camera Endoscope Using Optical Tracker: A Study on Phantom

机译:使用光学跟踪器的单摄像机内窥镜的立体增强现实:幻影的研究

获取原文

摘要

Introduction: Endoscopic surgery causes reduced injury to tissues which helps in rapid recovery and less painful post-operative period of patients. However, its narrow field of view and loss of depth perception in endoscope image make surgeon's task difficult. Moreover, in endoscopic surgery surgeons can only see the surface of the surgical anatomy. In this study these limitations have been addressed with the development of an augmented reality system with 3D visualization. Method: The system is comprising of infrared based optical tracker, 2D endoscope system, computer and a 3D monitor. The system was calibrated to bring all the components to a single reference frame of the optical tracker. A phantom and its 3D CT model were used, respectively, to form the real and virtual part of the augmented reality. The endoscope camera position was tracked in 3D using a tracker tool mounted on it. The camera in the virtual environment was updated with the new positions of the endoscope camera. The endoscope video frame and the virtual model rendered image were superimposed to form augmented reality view. The depth map of the virtual scene was further used to make an stereo pair of the augmented reality. Results: The AR system was examined with endoscope video of phantom. It could produce well aligned real and virtual component. The contour different of the two components was 5 to 10 mm. Conclusion: An AR system for endoscopic surgery was successfully implemented on a phantom. It needs to include motion and deformation model to be applied on real patients.
机译:简介:内窥镜手术减少了对组织的伤害,这有助于患者快速康复并减轻术后痛苦。然而,其狭窄的视野和内窥镜图像中深度感知的损失使外科医生的任务变得困难。此外,在内窥镜手术中,外科医生只能看到手术解剖的表面。在这项研究中,这些局限性已通过开发具有3D可视化功能的增强现实系统得以解决。方法:该系统包括基于红外的光学跟踪器,2D内窥镜系统,计算机和3D监视器。该系统已经过校准,可以将所有组件带到光学跟踪器的单个参考系中。分别使用了幻影及其3D CT模型来形成增强现实的真实和虚拟部分。使用安装在其上的跟踪器工具以3D形式跟踪内窥镜摄像机的位置。虚拟环境中的摄像头已使用内窥镜摄像头的新位置进行了更新。内窥镜视频帧和虚拟模型渲染的图像被叠加以形成增强现实视图。虚拟场景的深度图还用于制作增强现实的立体声对。结果:使用幻像的内窥镜视频检查了AR系统。它可以产生对齐的真实和虚拟组件。两种成分的轮廓差异为5至10mm。结论:在幻影上成功实施了用于内窥镜手术的AR系统。它需要包括要应用于实际患者的运动和变形模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号