用单目关节镜视频实现关节结构实时三维重建与增强现实导航
Seamless Augmented Reality Integration in Arthroscopy: A Pipeline for Articular Reconstruction and Guidance
- 基于单目视频融合定位、深度估计与3D高斯泼溅重建关节结构
- 7分钟完成密集重建,误差2.21mm,渲染质量PSNR达32.86
- 无需额外设备,可直接用于术中测量与标注,适合关节外科手术
关节镜手术是用于诊断和治疗关节疾病的微创手术,传统流程依赖医生通过关节镜的有限视野进行视觉判断,存在视野受限和缺乏深度感知的问题,影响复杂关节结构的导航与操作精度。为提升术中感知能力,本文提出一种鲁棒的端到端管道,仅需单目关节镜视频,结合同时定位与地图构建、深度估计及3D高斯泼溅技术,实现关节内部结构的真实三维重建。该方法扩展至增强现实(AR)应用,支持人机协同的关节切迹测量与标注锚定。相比传统SfM与神经辐射场方法,本方案在平均7分钟内完成密集三维重建,且具备优异的渲染保真度与显式三维表示。在四个模拟数据集上评估,重建均方根误差为2.21mm,PSNR为32.86,结构相似性为0.89。所提出的AR测量工具精度达1.59±1.81mm,标注工具平均交并比为0.721。由于该系统仅需单目视频,无需额外数据或硬件,具有显著临床推广潜力。
原文摘要 · Abstract (English)
Arthroscopy is a minimally invasive surgical procedure used to diagnose and treat joint problems. The clinical workflow of arthroscopy typically involves inserting an arthroscope into the joint through a small incision, during which surgeons navigate and operate largely by relying on their visual assessment through the arthroscope. However, the arthroscope's restricted field of view and lack of depth perception pose challenges in navigating complex articular structures and achieving surgical precision during procedures. Aiming at enhancing intraoperative awareness, we present a robust pipeline that incorporates simultaneous localization and mapping, depth estimation, and 3D Gaussian splatting to realistically reconstruct intra-articular structures solely based on monocular arthroscope video. Extending 3D reconstruction to Augmented Reality (AR) applications, our solution offers AR assistance for articular notch measurement and annotation anchoring in a human-in-the-loop manner. Compared to traditional Structure-from-Motion and Neural Radiance Field-based methods, our pipeline achieves dense 3D reconstruction and competitive rendering fidelity with explicit 3D representation in 7 minutes on average. When evaluated on four phantom datasets, our method achieves RMSE = 2.21mm reconstruction error, PSNR = 32.86 and SSIM = 0.89 on average. Because our pipeline enables AR reconstruction and guidance directly from monocular arthroscopy without any additional data and/or hardware, our solution may hold the potential for enhancing intraoperative awareness and facilitating surgical precision in arthroscopy. Our AR measurement tool achieves accuracy within 1.59 +/- 1.81mm and the AR annotation tool achieves a mIoU of 0.721.
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