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Updated: Sep 15, 2025

Establishment of a Minimally Invasive Rat Model of Pulmonary Embolism Using Autologous Blood Clots
Published on: October 25, 2024
X-ray2CTPA: leveraging diffusion models to enhance pulmonary embolism classification.
Noa Cahan1, Eyal Klang2, Galit Aviram3
1Faculty of Engineering, Tel Aviv University, Tel-Aviv, Israel. noa.cahan@gmail.com.
This study introduces a novel AI method to generate detailed 3D CT Pulmonary Angiography (CTPA) scans from low-resolution 2D Chest X-rays (CXR). This advancement aims to improve pulmonary embolism diagnosis with more accessible and cost-effective imaging.
Area of Science:
- Medical Imaging
- Artificial Intelligence
- Radiology
Background:
- Chest X-rays (CXR) offer limited detail compared to CT scans.
- CT Pulmonary Angiography (CTPA) provides superior 3D data but is costly and involves higher radiation exposure.
- Bridging the gap between CXR and CTPA is crucial for accessible diagnostics.
Purpose of the Study:
- To develop a generative AI model for cross-modal translation from 2D CXR to 3D CTPA.
- To enhance diagnostic accuracy for conditions like Pulmonary Embolism (PE) using synthesized CTPA data.
- To explore the generalizability of the model for other medical imaging cross-modality translations.
Main Methods:
- A novel diffusion-based generative AI approach was employed for the X-ray to CTPA translation.
- Synthesized 3D CTPA images were integrated into a classification framework.
- Model performance was rigorously evaluated using quantitative metrics and a PE categorization task.
Main Results:
- The AI model successfully translated low-resolution 2D CXR to high-resolution 3D CTPA.
- Improved Area Under the Curve (AUC) was observed in the Pulmonary Embolism (PE) classification task.
- Generated images demonstrated diagnostic relevance, validated by quantitative assessments.
Conclusions:
- The proposed diffusion-based method enables high-fidelity cross-modal medical image translation.
- This approach offers a pathway towards more accessible and cost-effective advanced diagnostic imaging.
- The method shows promise for broader applications in medical imaging and diagnostics.
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