A multiple catheter tips tracking method in X-ray fluoroscopy images by a new lightweight segmentation network and

Hui Tang1,2,3, Hao Kai Li1, Chun Feng Yang1,2,3

  • 1School of Computer Science and Engineering, Southeast University, Nanjing, China.

Insights

This study introduces a novel framework for tracking catheter tips in X-ray fluoroscopy during percutaneous coronary intervention. The method enhances visualization for dynamic coronary roadmap overlap, improving procedural accuracy.

Area of Science:

  • Medical Imaging
  • Interventional Cardiology
  • Computer Vision

Background:

  • Percutaneous coronary intervention (PCI) relies on guiding catheters for accurate placement.
  • X-ray fluoroscopy is crucial for visualizing catheter tips but suffers from noise and low contrast due to low radiation doses.
  • Accurate tracking of the catheter tip is essential for dynamic coronary roadmap generation and overlap.

Purpose of the Study:

  • To develop and validate a robust catheter tip tracking framework for X-ray fluoroscopy sequences.
  • To improve the accuracy of dynamic coronary roadmap generation by precisely tracking catheter tip motion.
  • To address the challenges of low signal-to-noise ratio and low contrast in X-ray fluoroscopy images.

Main Methods:

  • A lightweight, efficient catheter tip segmentation network was developed, enhanced with a self-distillation training mechanism.
  • Bayesian filtering was employed for post-processing to refine segmentation by incorporating temporal sequence information.
  • The framework was designed to track multiple catheter tips by grouping segmentation results based on connectivity.

Main Results:

  • The proposed framework demonstrated effective catheter tip segmentation and tracking in noisy, low-contrast X-ray fluoroscopy images.
  • The self-distillation mechanism improved the efficiency and accuracy of the segmentation network.
  • Bayesian filtering successfully refined tracking by leveraging temporal data, and multi-tip tracking capability was achieved.

Conclusions:

  • The developed framework provides a reliable method for catheter tip tracking in X-ray fluoroscopy during PCI.
  • This technology has the potential to enhance the precision and safety of interventional cardiology procedures.
  • The framework's ability to handle challenging imaging conditions and track multiple tips offers significant clinical value.

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