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EasyVis:一种用于腹腔镜手术箱式训练器的实时三维可视化软件系统。

EasyVis: a real-time 3D visualization software system for laparoscopic surgery box trainer.

作者信息

Sun Yung-Hong, Ke Jianwei, Fernandes Jayer, Chen Jiangang, Jiang Hongrui, Hu Yu Hen

机构信息

Electrical and Computer Engineering, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

Updates Surg. 2025 Mar 16. doi: 10.1007/s13304-025-02153-w.

Abstract

EasyVis is an emerging immersive 3D laparoscopic visualization system for improving the efficiency of laparoscopic surgery. It integrates multiple micro-cameras and light sources with the surgical ports to provide intra-abdominal stereo vision of surgery at a desired viewpoint. In this work, we develop a visualization algorithm using the EasyVis micro-camera array assembly in a laparoscopic surgery training box environment with simplified training tasks to validate the feasibility of this novel technology. Since most laparoscopic surgical tools are rigid-body objects, their 3D shape may be acquired offline. We developed 2D object detection and track algorithms to acquire the 2D pose of each object and a 3D fusion algorithm to estimate and track the 3D pose of each object using estimated 2D poses. Then, together with the acquired 3D model of each object, we are able to render each object at a desired view using the 3D surface model (acquired offline) and images acquired from individual micro-cameras. In addition to the foreground rigid objects, the background 3D model is acquired using structured lights and structure from motion. The background is assumed to be slowly varying compared to the rapid motion of the foreground objects. As such, the background 3D model needs to be updated only occasionally. Our rendering algorithm is capable of integrating the foreground and background 3D models to facilitate image-based rendering from a desirable viewing angle. We performed experiments to validate the accuracy and quality of the rendered images.

摘要

EasyVis是一种新兴的沉浸式3D腹腔镜可视化系统,用于提高腹腔镜手术的效率。它将多个微型摄像头和光源与手术端口集成在一起,以在所需视角提供腹腔内手术的立体视觉。在这项工作中,我们在具有简化训练任务的腹腔镜手术训练箱环境中,使用EasyVis微型摄像头阵列组件开发了一种可视化算法,以验证这项新技术的可行性。由于大多数腹腔镜手术工具都是刚体对象,它们的3D形状可以离线获取。我们开发了2D目标检测和跟踪算法来获取每个对象的2D姿态,并开发了一种3D融合算法,使用估计的2D姿态来估计和跟踪每个对象的3D姿态。然后,结合每个对象获取的3D模型,我们能够使用3D表面模型(离线获取)和从各个微型摄像头获取的图像,在所需视图中渲染每个对象。除了前景刚体对象外,背景3D模型使用结构化光和运动结构获取。假设背景相对于前景对象的快速运动变化缓慢。因此,背景3D模型只需偶尔更新。我们的渲染算法能够整合前景和背景3D模型,以便从理想视角进行基于图像的渲染。我们进行了实验以验证渲染图像的准确性和质量。

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