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A Motion Correction Algorithm for Microendoscope Video Computing in Image-Guided Intervention

机译:图像引导下微内窥镜视频计算的运动校正算法

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摘要

In multimodality image-guided intervention for cancer diagnosis, a needle with cannula is first punctured using CT or MRI -guided system to target the tumor, then microendoscopy can be performed using an optical fiber through the same cannula. With real-time optical imaging, the operator can directly determine the malignance of the tumor or perform fine needle aspiration biopsy for further diagnosis. During this operation, stable microendoscopy image series are needed to quantify the tissue properties, but they are often affected by respiratory and heart systole motion even when the interventional probe is held steadily. This paper proposes a microendoscopy motion correction (MMC) algorithm using normalized mutual information (NMI)-based registration and a nonlinear system to model the longitudinal global transformations. Cubature Kalman filter is thus used to solve the underlying longitudinal transformations, which yields more stable and robust motion estimation. After global motion correction, longitudinal deformations among the image sequences are calculated to further refine the local tissue motion. Experimental results showed that compared to global and deformable image registrations, MMC yields more accurate alignment results for both simulated and real data.
机译:在用于癌症诊断的多模态图像引导干预中,首先使用CT或MRI引导系统刺穿带套管的针头以靶向肿瘤,然后可以使用光纤通过同一套管进行微内窥镜检查。借助实时光学成像,操作员可以直接确定肿瘤的恶性或进行细针穿刺活检以进一步诊断。在此手术中,需要稳定的显微内窥镜图像序列来量化组织特性,但是即使将介入探头稳定握持,它们也经常会受到呼吸和心脏收缩运动的影响。本文提出了一种微内窥镜运动校正(MMC)算法,该算法使用基于归一化互信息(NMI)的配准和非线性系统对纵向全局变换进行建模。因此,使用Cubature Kalman滤波器来解决基本的纵向变换,从而产生更稳定,更鲁棒的运动估计。在全局运动校正之后,计算图像序列之间的纵向变形以进一步改善局部组织运动。实验结果表明,与整体图像和可变形图像配准相比,MMC对模拟数据和真实数据均产生更准确的对齐结果。

著录项

  • 来源
  • 会议地点 Beijing(CN);Beijing(CN)
  • 作者单位

    The Center for Bioengineering and Informatics, The Methodist Hospital Research Institute and Department of Radiology, The Methodist Hospital, Weil Cornell Medical College,Houston, TX;

    The Center for Bioengineering and Informatics, The Methodist Hospital Research Institute and Department of Radiology, The Methodist Hospital, Weil Cornell Medical College,Houston, TX;

    Intelligent Information Institute, Shenzhen University, Shenzhen, China;

    The Center for Bioengineering and Informatics, The Methodist Hospital Research Institute and Department of Radiology, The Methodist Hospital, Weil Cornell Medical College,Houston, TX;

    The Center for Bioengineering and Informatics, The Methodist Hospital Research Institute and Department of Radiology, The Methodist Hospital, Weil Cornell Medical College,Houston, TX;

    The Center for Bioengineering and Informatics, The Methodist Hospital Research Institute and Department of Radiology, The Methodist Hospital, Weil Cornell Medical College,Houston, TX;

    The Center for Bioengineering and Informatics, The Methodist Hospital Research Institute and Department of Radiology, The Methodist Hospital, Weil Cornell Medical College,Houston, TX;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用物理学;
  • 关键词

    fluorescence microendoscopy; motion correction; normalized mutual information; cubature kalman filter; deformable video registration;

    机译:荧光显微内窥镜;运动校正规范化的共同信息;卡尔曼过滤器变形视频配准;
  • 入库时间 2022-08-26 14:09:57

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