Deep learning for cardiac imaging: focus on myocardial diseases, a narrative review

Theodoros Tsampras1, Theodora Karamanidou2, Giorgos Papanastasiou2

  • 11st Cardiology Department, Hippokration Hospital, Athens, Greece.

Insights

Deep learning (DL) in computational cardiology enhances cardiovascular disease diagnosis using medical imaging. DL algorithms improve myocardial tissue segmentation and radiomic analysis for earlier detection and personalized treatment.

Area of Science:

  • Computational cardiology
  • Medical imaging analysis
  • Artificial intelligence in healthcare

Background:

  • Cardiovascular diseases require precise diagnosis and management.
  • Computational technologies, especially imaging and informatics, are revolutionizing cardiology.
  • Early disease detection in asymptomatic patients is crucial for improved outcomes.

Purpose of the Study:

  • To review the state of the art in deep learning (DL) applications in cardiovascular medical imaging.
  • To focus on DL for automatic segmentation, radiomic feature phenotyping, and disease prediction.
  • To discuss challenges in integrating DL models into clinical practice.

Main Methods:

  • Review of current literature on DL in cardiovascular imaging (CT, CMR, echocardiography, SPECT).
  • Focus on techniques like automatic segmentation and radiomic analysis.
  • Exploration of DL for disease phenotyping and prediction.

Main Results:

  • DL algorithms enable efficient and consistent automatic segmentation of myocardial tissue.
  • Radiomic analysis using DL enhances disease detection, patient stratification, and monitoring.
  • Radiomic biomarkers show high accuracy in distinguishing myocardial pathologies.

Conclusions:

  • DL applications in cardiovascular imaging offer significant potential for earlier disease detection and personalized treatment.
  • Automatic segmentation and radiomic phenotyping are key areas of advancement.
  • Integration challenges for DL models in clinical practice need to be addressed.

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