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Related Concept Videos

Cardiac Catheterization III: Left Heart Catheterization01:24

Cardiac Catheterization III: Left Heart Catheterization

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Left heart catheterization is an invasive diagnostic procedure used to evaluate the function and structure of the left side of the heart. It is generally performed to diagnose and treat cardiovascular conditions such as valve abnormalities, coronary artery disease, and congenital heart defects.Diagnostic and therapeutic purposesLeft heart catheterization serves various diagnostic and therapeutic purposes, including:Assessing coronary artery bypass grafts.Evaluating coronary artery disease in...
277
Imaging Studies VII: Vascular Imaging01:19

Imaging Studies VII: Vascular Imaging

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DefinitionRenal angiography, also known as renal arteriography, is an imaging technique used to obtain a comprehensive view of blood flow and the vascular structure of blood vessels in the kidneys and surrounding areas.PurposeRenal angiography detects blood vessel abnormalities in the kidneys, such as aneurysms, stenosis, thrombosis, vascular tumors, and renal artery stenosis. It evaluates kidney function and guides interventional treatments like angioplasty or stent placement.Pre-Procedure...
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Cardiac Catheterization I: Pre-Procedure Overview01:28

Cardiac Catheterization I: Pre-Procedure Overview

282
Cardiac catheterization is an invasive diagnostic technique used to identify and evaluate structural and functional diseases of the heart and major blood vessels. This technique diagnoses congenital heart disease, coronary artery disease, valvular heart disease, and coronary spasms and assesses ventricular function. It helps guide treatment decisions, including the need for revascularization procedures like percutaneous coronary intervention (PCI) or coronary artery bypass grafting (CABG) and...
282
Imaging Studies I: Kidney, Ureter, and Bladder Studies01:28

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67
Kidney, Ureter, and Bladder (KUB) StudiesKidney, Ureter, and Bladder (KUB) studies are standard diagnostic imaging procedures used to assess the anatomy of the urinary system. They are commonly utilized for patients experiencing abdominal pain or urinary symptoms. By using a simple X-ray of the abdomen, KUB studies can reveal structural and pathological abnormalities within the kidneys, ureters, and bladder. These studies are particularly valuable in diagnosing kidney stones, urinary...
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Related Experiment Video

Updated: Oct 19, 2025

Introduction of an Integrated Pathology Image Management, Artificial Intelligence, and Reporting System
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Robotics, imaging, and artificial intelligence in the catheterisation laboratory.

Rafael Beyar1, Justin E Davies, Christopher Cook

  • 1The Ruth & Bruce Rappaport Faculty of Medicine, Technion-Israel Institute of Technology, Haifa, Israel.

Eurointervention : Journal of Europcr in Collaboration with the Working Group on Interventional Cardiology of the European Society of Cardiology
|September 23, 2021
PubMed
Summary

Advancements in image-based coronary interventions utilize novel imaging, artificial intelligence (AI), and robotics to improve diagnosis and treatment. These technologies aim to enhance patient care, reduce radiation exposure, and enable remote procedures for wider access to expertise.

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Area of Science:

  • Cardiovascular Interventions
  • Medical Imaging Technology
  • Interventional Cardiology

Background:

  • The catheterisation laboratory integrates diagnosis and therapeutics using advanced imaging and interventional tools like balloons and stents.
  • Current practices rely heavily on X-ray imaging for coronary interventions, necessitating advancements in visualization and radiation safety.

Purpose of the Study:

  • To review recent progress in image-based coronary interventions.
  • To highlight the integration of novel imaging, AI, and robotics in interventional cardiology.
  • To discuss challenges and future directions in the field.

Main Methods:

  • Review of current literature and emerging technologies in interventional cardiology.
  • Focus on advancements in imaging modalities, including 3D/4D presentations and co-registration.
  • Exploration of AI, machine learning, robotic catheterisation, and remote procedures.

Main Results:

  • Novel imaging tools enhance visualization and interpretation of coronary stenosis.
  • AI and machine learning show promise for patient care through large dataset analysis, pending data sharing solutions.
  • Robotic catheterisation offers improved precision and reduced radiation exposure.
  • Remote procedures demonstrate potential for global knowledge sharing and access to expertise.

Conclusions:

  • Image-based coronary interventions are rapidly evolving with new technologies.
  • Overcoming data sharing barriers is crucial for AI and machine learning implementation.
  • Robotic and remote interventions represent the future of interventional cardiology, potentially expanding access to care, especially in neurovascular interventions.