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腹腔镜手术中的立体增强现实。

Stereoscopic augmented reality for laparoscopic surgery.

机构信息

Sheikh Zayed Institute for Pediatric Surgical Innovation, Children's National Medical Center, 111 Michigan Avenue NW, Washington, DC, 20010, USA,

出版信息

Surg Endosc. 2014 Jul;28(7):2227-35. doi: 10.1007/s00464-014-3433-x. Epub 2014 Feb 1.

Abstract

BACKGROUND

Conventional laparoscopes provide a flat representation of the three-dimensional (3D) operating field and are incapable of visualizing internal structures located beneath visible organ surfaces. Computed tomography (CT) and magnetic resonance (MR) images are difficult to fuse in real time with laparoscopic views due to the deformable nature of soft-tissue organs. Utilizing emerging camera technology, we have developed a real-time stereoscopic augmented-reality (AR) system for laparoscopic surgery by merging live laparoscopic ultrasound (LUS) with stereoscopic video. The system creates two new visual cues: (1) perception of true depth with improved understanding of 3D spatial relationships among anatomical structures, and (2) visualization of critical internal structures along with a more comprehensive visualization of the operating field.

METHODS

The stereoscopic AR system has been designed for near-term clinical translation with seamless integration into the existing surgical workflow. It is composed of a stereoscopic vision system, a LUS system, and an optical tracker. Specialized software processes streams of imaging data from the tracked devices and registers those in real time. The resulting two ultrasound-augmented video streams (one for the left and one for the right eye) give a live stereoscopic AR view of the operating field. The team conducted a series of stereoscopic AR interrogations of the liver, gallbladder, biliary tree, and kidneys in two swine.

RESULTS

The preclinical studies demonstrated the feasibility of the stereoscopic AR system during in vivo procedures. Major internal structures could be easily identified. The system exhibited unobservable latency with acceptable image-to-video registration accuracy.

CONCLUSIONS

We presented the first in vivo use of a complete system with stereoscopic AR visualization capability. This new capability introduces new visual cues and enhances visualization of the surgical anatomy. The system shows promise to improve the precision and expand the capacity of minimally invasive laparoscopic surgeries.

摘要

背景

传统腹腔镜提供了三维(3D)操作场的平面表示,并且无法可视化位于可见器官表面下方的内部结构。由于软组织器官的可变形性质,计算机断层扫描(CT)和磁共振(MR)图像难以实时与腹腔镜视图融合。利用新兴的摄像技术,我们通过将实时腹腔镜超声(LUS)与立体视频融合,开发了一种用于腹腔镜手术的实时立体增强现实(AR)系统。该系统创建了两个新的视觉提示:(1)具有更好的解剖结构 3D 空间关系理解的真实深度感知,以及(2)关键内部结构的可视化以及更全面的手术视野可视化。

方法

该立体 AR 系统已设计用于近期的临床转化,可无缝集成到现有的手术工作流程中。它由立体视觉系统、LUS 系统和光学跟踪器组成。专用软件处理来自跟踪设备的成像数据流并实时注册。生成的两个超声增强视频流(一个用于左眼,一个用于右眼)提供了手术现场的实时立体 AR 视图。该团队在两只猪中进行了一系列肝脏、胆囊、胆道和肾脏的立体 AR 检查。

结果

临床前研究证明了该立体 AR 系统在体内手术过程中的可行性。可以轻松识别主要的内部结构。该系统表现出可接受的图像到视频注册精度的不可观测的延迟。

结论

我们首次在体内使用了具有立体 AR 可视化功能的完整系统。这种新的功能引入了新的视觉提示,并增强了手术解剖结构的可视化。该系统有望提高微创手术的精度并扩大其容量。

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