Dalio Institute of Cardiovascular Imaging, New York Presbyterian Hospital and Weill Cornell Medicine, New York, United States of America.
PLoS One. 2019 Jul 1;14(7):e0219174. doi: 10.1371/journal.pone.0219174. eCollection 2019.
The primary mode of visualization during transcatheter procedures for structrural heart disease is fluoroscopy, which suffers from low contrast and lacks any depth perception, thus limiting the ability of an interventionalist to position a catheter accurately. This paper describes a new image guidance system by utilizing augmented reality to provide a 3D visual environment and quantitative feedback of the catheter's position within the heart of the patient. The real-time 3D position of the catheter is acquired via two fluoroscopic images taken at different angles, and a patient-specific 3D heart rendering is produced pre-operatively from a CT scan. The spine acts as a fiduciary land marker, allowing the position and orientation of the catheter within the heart to be fully registered. The automated registration method is based on Fourier transformation, and has a high success rate (100%), low registration error (0.42 mm), and clinically acceptable computational cost (1.22 second). The 3D renderings are displayed and updated on the augmented reality device (i.e., Microsoft HoloLens), which can provide pre-set views of various angles of the heart using voice-command. This new image-guidance system with augmented reality provides a better visualization to interventionalists and potentially assists them in understanding of complicated cases. Furthermore, this system coupled with the developed 3D printed models can serve as a training tool for the next generation of cardiac interventionalists.
经导管结构性心脏病治疗的主要可视化模式是荧光透视,这种方法对比度低,缺乏任何深度感知,因此限制了介入医生准确放置导管的能力。本文描述了一种新的图像引导系统,利用增强现实技术提供 3D 视觉环境和导管在患者心脏内位置的定量反馈。导管的实时 3D 位置通过两个不同角度拍摄的荧光透视图像获得,并且从 CT 扫描术前生成患者特定的 3D 心脏渲染。脊柱充当信托标记物,允许导管在心脏内的位置和方向完全注册。自动注册方法基于傅立叶变换,具有高成功率(100%)、低注册误差(0.42 毫米)和可接受的临床计算成本(1.22 秒)。3D 渲染图显示并更新在增强现实设备(即 Microsoft HoloLens)上,该设备可以使用语音命令提供心脏各个角度的预设视图。这种具有增强现实功能的新图像引导系统为介入医生提供了更好的可视化效果,并有可能帮助他们理解复杂的病例。此外,该系统与开发的 3D 打印模型相结合,可以作为下一代心脏介入医生的培训工具。