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Updated: Aug 11, 2025

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X-ray Dose Reduction through Adaptive Exposure in Fluoroscopic Imaging
Published on: September 11, 2011
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CT-based data generation for foreign object detection on a single X-ray projection.
Vladyslav Andriiashen1, Robert van Liere2,3, Tristan van Leeuwen2,4
1Computational Imaging, Centrum Wiskunde en Informatica, Science Park 123, 1098 XG, Amsterdam, The Netherlands. vladyslav.andriiashen@cwi.nl.
Scientific Reports
|February 2, 2023
Summary
This study introduces a new method using computed tomography (CT) to generate artificial X-ray images. This significantly reduces the data needed for deep learning models to accurately detect internal defects in industrial products.
Area of Science:
- Industrial Imaging
- Artificial Intelligence
- Non-Destructive Testing
Background:
- X-ray imaging faces limitations in detecting internal defects due to feature superposition.
- Current deep learning methods require extensive annotated data, hindering industrial application with variable products.
Purpose of the Study:
- To develop a computationally efficient method for generating artificial single-view X-ray data.
- To reduce the reliance on large annotated datasets for defect detection.
Main Methods:
- A computed tomography (CT)-based approach to create artificial single-view X-ray data from a few physical scans.
- Algorithmic modification of CT volumes to generate diverse training examples.
Main Results:
- The generative model achieved high accuracy using data from a single CT-scanned object, comparable to tens of real-world samples.
- Significant reduction in required training data, improved defect detection coverage, and enhanced generalizability.
Conclusions:
- The proposed CT-based generative approach enables accurate real-time foreign object detection with minimal training data.
- This methodology enhances the viability of deep learning for industrial quality control, especially with high product variability.
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