arXiv:2608.08949cs.CV2026-08

针对内窥镜图像模糊时的3D重建漂移问题,提出新方法分离静态解剖结构与动态干扰。

EndoMD-SLAM: Endoscopic Gaussian Splatting SLAM under Optical Degradation with Memory and Static-Transient Decomposition

论文配图:EndoMD-SLAM: Endoscopic Gaussian Splatting SLAM under Optical Degradation with Memory and Static-Transient Decomposition
图 1 · 摘自论文原文
  • 用历史关键帧记忆和门控机制过滤不可靠观测,避免错误更新地图
  • 通过自监督分解将水渍、碎屑等干扰物分离到独立临时层
  • 在真实结肠镜视频上验证,轨迹误差降低91%,渲染质量提升9.9dB

密集3D重建对内窥镜导航与记录至关重要。现有高斯点云SLAM系统依赖多视角光度一致性,但在实际操作中常因移动碎屑、冲洗水流等光学退化而失效。标准方法会将这些附着于相机的伪影误融合进永久解剖结构,导致严重跟踪漂移与地图不可逆污染。为此,我们提出EndoMD-SLAM,通过专用追踪与建图机制在退化条件下保持稳定。追踪端采用记忆驱动的门控机制,识别不可靠观测并暂停地图更新,利用历史关键帧实现漂移感知重定位;建图端引入自监督静态-瞬态分解,将视觉污染物隔离至专用瞬态场,避免其与持久解剖地图结构耦合。我们构建了聚焦退化的结肠镜视频基准数据集,系统评估各类失效模式。大量实验表明,在严重光学退化下,标准基线完全失效,而EndoMD-SLAM有效维持几何完整性,绝对轨迹误差降低91%,渲染保真度提升9.9 dB PSNR。

原文摘要 · Abstract (English)

Dense 3D reconstruction is critical for clinical endoscopic navigation and documentation. While Gaussian Splatting SLAM systems show promise in this domain, they fundamentally rely on strict multi-view photometric consistency. In routine procedures, this assumption is severely violated by intermittent optical degradations like moving debris and water flushing. Standard systems erroneously fuse these cameraattached artifacts into the persistent 3D geometry, causing severe tracking drift and irreversible map corruption. To address this limitation, we propose EndoMD-SLAM, a framework designed to maintain stability under optical degradation through specialized tracking and mapping mechanisms. On the tracking side, a memory-driven gating mechanism detects unreliable observations to suspend map updates and utilizes historical keyframes for drift-aware relocalization. On the mapping side, a self-supervised static-transient decomposition isolates visual contaminants into a dedicated transient field. This explicit separation prevents artifacts from structurally entangling with the persistent anatomical map. We curate a degradationfocused benchmark from colonoscopy videos to systematically evaluate these failure modes. Extensive experiments show that while standard baselines fail under severe optical degradation, EndoMD-SLAM preserves geometric integrity, reducing absolute trajectory error by 91% and improving rendering fidelity by 9.9 dB PSNR.

3D重建内窥镜SLAM去噪

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