University of Nebraska-Lincoln, Lincoln, NE 68588, USA.
Surg Endosc. 2012 Dec;26(12):3413-7. doi: 10.1007/s00464-012-2355-8. Epub 2012 May 31.
Accurate real-time 3D models of the operating field have the potential to enable augmented reality for endoscopic surgery. A new system is proposed to create real-time 3D models of the operating field that uses a custom miniaturized stereoscopic video camera attached to a laparoscope and an image-based reconstruction algorithm implemented on a graphics processing unit (GPU).
The proposed system was evaluated in a porcine model that approximates the viewing conditions of in vivo surgery. To assess the quality of the models, a synthetic view of the operating field was produced by overlaying a color image on the reconstructed 3D model, and an image rendered from the 3D model was compared with a 2D image captured from the same view.
Experiments conducted with an object of known geometry demonstrate that the system produces 3D models accurate to within 1.5 mm.
The ability to produce accurate real-time 3D models of the operating field is a significant advancement toward augmented reality in minimally invasive surgery. An imaging system with this capability will potentially transform surgery by helping novice and expert surgeons alike to delineate variance in internal anatomy accurately.
准确的实时 3D 手术视野模型有可能实现内窥镜手术的增强现实。本文提出了一种新的系统,该系统使用附接到腹腔镜的定制小型立体视频摄像机和在图形处理单元 (GPU) 上实现的基于图像的重建算法,来创建实时 3D 手术视野模型。
该系统在模拟体内手术观察条件的猪模型中进行了评估。为了评估模型的质量,通过将彩色图像叠加在重建的 3D 模型上来生成手术视野的合成视图,并将从 3D 模型渲染的图像与从相同视图捕获的 2D 图像进行比较。
使用具有已知几何形状的物体进行的实验表明,该系统生成的 3D 模型的精度在 1.5mm 以内。
能够生成手术视野的准确实时 3D 模型是微创外科增强现实的重大进展。具有这种功能的成像系统将有可能通过帮助新手和专家外科医生准确地描绘内部解剖结构的差异来改变手术方式。