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Intraoperative 3D Stereo Visualization for Image-GuidedCardiac Ablation

机译:图像引导的术中3D立体声可视化

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There are commercial products which provide 3D rendered volumes, reconstructed from electro-anatomical map-ping and/or pre-operative CT/MR images of a patient's heart with tools for highlighting target locations for cardiac ablation applications. However, it is not possible to update the three-dimensional (3D) volume intra-operatively to provide the interventional cardiologist with more up-to-date feedback at each instant of time. In this paper, we describe the system we have developed for real-time three-dimensional stereo visualization for cardiac ablation. A 4D ultrasound probe is used to acquire and update a 3D image volume. A magnetic tracking device is used to track the distal part of the ablation catheter in real time and a master-slave robot-assisted system is developed for actuation of a steerable catheter. Three-dimensional ultrasound image volumes go through some processing to make the heart tissue and the catheter more visible. The rendered volume is shown in a virtual environment. The catheter can also be added as a virtual tool to this environment to achieve a higher update rate on the catheter's position. The ultrasound probe is also equipped with an EM tracker which is used for online registration of the ultrasound images and the catheter tracking data. The whole augmented reality scene can be shown stereoscopically to enhance depth perception for the user. We have used transthoracic echocar-diography (TTE) instead of the conventional transoesophageal (TEE) or intracardiac (ICE) echocardiogram. A beating heart model has been used to perform the experiments. This method can be used both for diagnostic and therapeutic applications as well as training interventional cardiologists.
机译:不存在提供3D渲染量从电解剖图平及/或与高亮心脏消融应用目标位置工具患者心脏的术前CT / MR图像重构商业产品。然而,这是不可能的,以更新三维(3D)体手术中在每个时刻提供更先进的日期反馈的介入心脏病。在本文中,我们描述了我们的实时三维立体可视化的心脏消融开发的系统。甲4D超声波探头被用于获取和更新的3D图像体积。一种磁跟踪装置,用于实时跟踪和主从机器人辅助系统是为一可操纵导管的致动开发的消融导管的远端部分。三维超声图像体积经过一定的处理,使心脏组织和导管更加明显。所呈现的体积被示出在虚拟环境中。导管也可以添加一个虚拟工具,这样的环境,实现对导管的位置较高的更新率。另外,超声波探头还配备了其用于超声图像的在线注册和导管的跟踪数据的EM跟踪器。整个增强现实场景可以立体显示以增强用户的深度知觉。我们使用经胸echocar-diography(TTE)代替传统的经食道(TEE)或心内(ICE)超声心动图。跳动的心脏模型已被用于进行实验。该方法可用于诊断和治疗的应用,以及训练介入心脏病学专家可以使用两者。

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