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Updated: Jul 18, 2025

Non-fluoroscopic Catheter Tracking for Fluoroscopy Reduction in Interventional Electrophysiology
Published on: May 26, 2015
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.
Abstract:
During percutaneous coronary intervention, the guiding catheter plays an important role. Tracking the catheter tip placed at the coronary ostium in the X-ray fluoroscopy sequence can obtain image displacement information caused by the heart beating, which can help dynamic coronary roadmap overlap on X-ray fluoroscopy images. Due to a low exposure dose, the X-ray fluoroscopy is noisy and low contrast, which causes some difficulties in tracking. In this paper, we developed a new catheter tip tracking framework. First, a lightweight efficient catheter tip segmentation network is proposed and boosted by a self-distillation training mechanism. Then, the Bayesian filtering post-processing method is used to consider the sequence information to refine the single image segmentation results. By separating the segmentation results into several groups based on connectivity, our framework can track multiple catheter tips. The proposed tracking framework is validated on a clinical X-ray sequence dataset.

