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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 relative anatomy of the coronary arterial and venous systems: implications for coronary interventions
Julianne H Spencer1, Cassandra C Sundaram, Paul A Iaizzo
1Department of Biomedical Engineering, University of Minnesota, Minneapolis, Minnesota; Medtronic, Inc., Minneapolis, Minnesota; Institute for Engineering in Medicine, University of Minnesota, Minneapolis, Minnesota.
Insights
Detailed anatomical mapping of human coronary arteries and veins using contrast-CT reveals significant variability. Understanding these precise relationships is crucial for developing advanced cardiac devices and therapies.
Area of Science:
- Cardiovascular Anatomy
- Medical Imaging
- Biomedical Engineering
Background:
- Accurate anatomical knowledge of the coronary arterial and venous systems is essential for developing medical devices and therapeutic strategies.
- Previous studies have not fully detailed the spatial relationships between coronary arteries and veins.
Purpose of the Study:
- To investigate and visualize the anatomical relationships between human coronary arteries and veins.
- To quantify the proximity of coronary veins to adjacent coronary arteries using contrast-computed tomography (CT).
Main Methods:
- Utilized contrast-CT scans from eleven perfusion-fixed human hearts.
- Modeled coronary arterial and venous systems using Mimics software for 3D visualization and analysis.
- Recorded and analyzed proximity (distance) and adjacency of coronary arteries to veins.
Main Results:
- The majority of coronary veins were located within 5 mm of a coronary artery.
- Interventricular veins showed the highest frequency of proximity.
- Significant variability existed in the percentage of veins coursing near arteries, highlighting individual anatomical differences.
Conclusions:
- Individualized anatomical variations in coronary vasculature are substantial.
- Precise understanding of patient-specific coronary anatomy is vital for optimal cardiac device development and patient care.
- This study provides a detailed anatomical basis for future cardiovascular interventions.
Abstract:
An anatomical understanding of human coronary arterial and venous systems is necessary for device development and therapy applications that utilize these vessels. We investigated the unique use of contrast-CT scans from perfusion-fixed human hearts for three-dimensional visualization and analysis of anatomical features of the coronary systems. The coronary arterial and venous systems of eleven perfusion-fixed human hearts were modeled using contrast-CT and Mimics software. The coronary arteries that coursed near the major coronary veins, how close coronary arteries were to coronary veins, and the size of adjacent coronary arteries were recorded and analyzed. The majority of coronary veins were within 5 mm of a coronary artery somewhere along its length. Interventricular veins elicited the largest occurrence of overlaps. There was significant variability in the percentage of each vein that coursed within 0.5, 1, 2, and 5 mm of a nearby artery. The left marginal veins and anterior interventricular vein had the largest portion of the vein that coursed near a coronary artery. The right coronary artery most often coursed near the middle cardiac vein. The inferior veins of the left ventricle elicited the most variation in adjacent arteries. The left circumflex artery and/or branches of the circumflex artery coursed near the left marginal vein in all cases where there was an artery near the marginal vein. The wide variation of measurements reinforces the importance of a precise understanding of individualized cardiac anatomy in order to provide the highest quality care to cardiac patients.
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