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Anatomical Reconstructions of the Human Cardiac Venous System using Contrast-computed Tomography of Perfusion-fixed Specimens
Published on: April 18, 2013
The Coronary Venous System: An Alternate Portal to the Myocardium for Diagnostic and Therapeutic Procedures in
1Division of Cardiovascular Diseases and Internal Medicine, Mayo Clinic and Mayo Foundation, 200 First Street, SW, Rochester, MN 55905, USA. holmes.david@mayo.edu
Insights
Retrograde coronary venous perfusion offers therapeutic benefits for myocardial ischemia and drug delivery. Advanced imaging techniques like electron beam computed tomography (EBCT) are crucial for patient selection and procedural guidance.
Area of Science:
- Cardiovascular Medicine
- Interventional Cardiology
- Biomedical Engineering
Background:
- Retrograde coronary venous perfusion preserves myocardium during ischemia and aids in drug delivery.
- Clinical applications include unstable angina and high-risk percutaneous transluminal coronary angioplasty (PTCA).
- Modifications enhance delivery to smaller vessels and minimize systemic effects.
Purpose of the Study:
- To explore the potential of retrograde coronary venous perfusion for myocardial protection and targeted drug/gene delivery.
- To evaluate the role of contrast-enhanced electron beam computed tomography (EBCT) in assessing coronary venous anatomy for procedural planning.
Main Methods:
- Review of experimental and clinical data on retrograde coronary venous perfusion techniques.
- Assessment of EBCT's capability for noninvasive imaging of coronary venous anatomy and arteriovenous relationships.
Main Results:
- Retrograde perfusion limits infarct size and preserves myocardial function in animal models.
- EBCT provides high-resolution imaging, aiding in candidate selection and procedural guidance for venous-based interventions.
Conclusions:
- Retrograde coronary venous perfusion is a versatile technique with potential applications in drug delivery, gene therapy, and bypass creation.
- EBCT is a promising imaging modality for evaluating patients considered for coronary venous interventions.
Abstract:
Retrograde coronary venous perfusion can preserve myocardium during experimental coronary artery occlusion and has been used clinically to deliver oxygenated blood to ischemic myocardium during unstable angina or high-risk percutaneous transluminal coronary angioplasty (PTCA). Retrograde delivery of drugs accelerates coronary thrombolysis, preserves regional myocardial function, and limits infarct size in animal models. Modifications of the coronary venous retroperfusion technique have allowed access to smaller coronary venous branches and minimization of systemic effects of local drug delivery. Retrograde coronary sinus perfusion as an adjunct in high-risk coronary PTCA is limited by its inability to provide systemic hemodynamic support during circulatory collapse. Targeted and specific gene delivery to myocardium with transfection rates superior to intraarterial or systemic injection may be a promising new application for this technique. The coronary venous system can also be used for the noninvasive creation of coronary artery bypasses or the insertion of leads for left ventricular pacing. Contrast-enhanced electron beam computed tomography (EBCT) can noninvasively provide high-resolution imaging of the coronary vessels with qualitative and quantitative information on coronary venous anatomy and coronary arteriovenous relationships and may help in selecting appropriate candidates, anticipating the degree of difficulty of the procedure, and guiding the approach. Therefore, EBCT may become the imaging modality of choice for the assessment of patients considered for such strategies.
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