The Role of Artificial Intelligence in Predicting Outcomes by Cardiovascular Magnetic Resonance: A Comprehensive Systematic Review.
Hosamadin AssadiSamer AlabedAhmed MaiterMahan SalehiRui LiDavid P RipleyRob J Van der GeestYumin ZhongLiang ZhongAndrew J SwiftAndrew J SwiftPublished in: Medicina (Kaunas, Lithuania) (2022)
Background and Objectives: Interest in artificial intelligence (AI) for outcome prediction has grown substantially in recent years. However, the prognostic role of AI using advanced cardiac magnetic resonance imaging (CMR) remains unclear. This systematic review assesses the existing literature on AI in CMR to predict outcomes in patients with cardiovascular disease. Materials and Methods: Medline and Embase were searched for studies published up to November 2021. Any study assessing outcome prediction using AI in CMR in patients with cardiovascular disease was eligible for inclusion. All studies were assessed for compliance with the Checklist for Artificial Intelligence in Medical Imaging (CLAIM). Results: A total of 5 studies were included, with a total of 3679 patients, with 225 deaths and 265 major adverse cardiovascular events. Three methods demonstrated high prognostic accuracy: (1) three-dimensional motion assessment model in pulmonary hypertension (hazard ratio (HR) 2.74, 95%CI 1.73-4.34, p < 0.001), (2) automated perfusion quantification in patients with coronary artery disease (HR 2.14, 95%CI 1.58-2.90, p < 0.001), and (3) automated volumetric, functional, and area assessment in patients with myocardial infarction (HR 0.94, 95%CI 0.92-0.96, p < 0.001). Conclusion: There is emerging evidence of the prognostic role of AI in predicting outcomes for three-dimensional motion assessment in pulmonary hypertension, ischaemia assessment by automated perfusion quantification, and automated functional assessment in myocardial infarction.
Keyphrases
- artificial intelligence
- machine learning
- deep learning
- systematic review
- big data
- cardiovascular disease
- cardiovascular events
- pulmonary hypertension
- magnetic resonance
- magnetic resonance imaging
- meta analyses
- left ventricular
- contrast enhanced
- heart failure
- type diabetes
- coronary artery disease
- healthcare
- high resolution
- case control
- emergency department
- glycemic control