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Coronary Magnetic Resonance Angiography in Chronic Coronary Syndromes
Reza Hajhosseiny1,2, Camila Munoz1, Gastao Cruz1
1School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.
Insights
Coronary magnetic resonance angiography (CMRA) offers a radiation-free alternative for assessing coronary artery disease (CAD). Recent advancements in AI and imaging techniques are making CMRA faster and more reliable for clinical use.
Area of Science:
- Cardiovascular imaging
- Medical technology
- Radiology
Background:
- Cardiovascular disease (CVD) is a leading global cause of death, with atherosclerotic coronary artery disease (CAD) being the most common form.
- Current gold standards for CAD assessment, X-ray coronary angiography and computed tomography coronary angiography (CCTA), involve ionizing radiation and iodinated contrast agents.
- A need exists for safer, alternative imaging modalities for early CAD detection and monitoring.
Purpose of the Study:
- To review recent technological advancements in coronary magnetic resonance angiography (CMRA).
- To explore how these innovations address limitations of CMRA for clinical application in CAD assessment.
- To highlight CMRA's potential as a radiation-free and contrast-agent-free imaging modality.
Main Methods:
- Review of recent technological progress in CMRA, focusing on image acceleration, motion correction, and reconstruction techniques.
- Integration of artificial intelligence (AI) and deep learning for motion estimation and image reconstruction.
- Evaluation of improvements in spatial resolution and acquisition times.
Main Results:
- Significant improvements in CMRA technology have been achieved over the past decade.
- AI-driven techniques enhance motion estimation and enable super-resolution reconstruction.
- High-resolution (1 mm isotropic), 3D whole-heart CMRA is now feasible in under 10 minutes, with potential for 1-minute acquisitions.
Conclusions:
- CMRA is emerging as a promising alternative to traditional angiography for CAD assessment.
- Technological advancements, particularly in AI, are overcoming previous limitations of CMRA.
- CMRA is nearing clinical readiness, offering a safer option for diagnosing and monitoring coronary artery disease.
Abstract:
Cardiovascular disease is the leading cause of mortality worldwide, with atherosclerotic coronary artery disease (CAD) accounting for the majority of cases. X-ray coronary angiography and computed tomography coronary angiography (CCTA) are the imaging modalities of choice for the assessment of CAD. However, the use of ionising radiation and iodinated contrast agents remain drawbacks. There is therefore a clinical need for an alternative modality for the early identification and longitudinal monitoring of CAD without these associated drawbacks. Coronary magnetic resonance angiography (CMRA) could be a potential alternative for the detection and monitoring of coronary arterial stenosis, without exposing patients to ionising radiation or iodinated contrast agents. Further advantages include its versatility, excellent soft tissue characterisation and suitability for repeat imaging. Despite the early promise of CMRA, widespread clinical utilisation remains limited due to long and unpredictable scan times, onerous scan planning, lower spatial resolution, as well as motion related image quality degradation. The past decade has brought about a resurgence in CMRA technology, with significant leaps in image acceleration, respiratory and cardiac motion estimation and advanced motion corrected or motion-resolved image reconstruction. With the advent of artificial intelligence, great advances are also seen in deep learning-based motion estimation, undersampled and super-resolution reconstruction promising further improvements of CMRA. This has enabled high spatial resolution (1 mm isotropic), 3D whole heart CMRA in a clinically feasible and reliable acquisition time of under 10 min. Furthermore, latest super-resolution image reconstruction approaches which are currently under evaluation promise acquisitions as short as 1 min. In this review, we will explore the recent technological advances that are designed to bring CMRA closer to clinical reality.
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