Myocardial volume perfused by coronary artery branches. A three-dimensional X-ray computed tomographic evaluation in

Y H Liu1, R C Bahn, E L Ritman

  • 1Department of Physiology, Mayo Medical School, Rochester, Minnesota 55905.

Insights

The cumulative length of coronary arterial branches correlates with the volume of heart muscle they supply. This finding may help estimate the myocardium at risk during coronary artery occlusion.

Area of Science:

  • Cardiovascular anatomy
  • Medical imaging
  • Myocardial perfusion

Background:

  • Assessing myocardial volume at risk is crucial for managing coronary artery disease.
  • Current methods may not fully capture the extent of tissue perfusion.
  • Understanding the relationship between arterial geometry and perfused volume is needed.

Purpose of the Study:

  • To test the hypothesis that cumulative arterial branch length relates to perfused tissue volume.
  • To explore the utility of this relationship in estimating myocardium at risk during coronary occlusion.

Main Methods:

  • In vivo measurement of myocardial volume and cumulative arterial branch length in pig hearts.
  • Utilized multislice computed tomographic (CT) imaging with contrast agent injection.
  • Analyzed data from left anterior descending, right coronary, and left circumflex arteries.

Main Results:

  • Established inverse relationships between perfused myocardial volume (V) and arterial length (L) for major coronary arteries.
  • Left anterior descending artery: V = 42.4 x 10(-0.011L) (r = -0.892).
  • Right coronary artery: V = 37.0 x 10(-0.008L) (r = -0.888).
  • Left circumflex artery: V = 27.7 x 10(-0.011L) (r = -0.883).

Conclusions:

  • Suggests that the three-dimensional geometry of the epicardial coronary arterial tree can estimate myocardial volume at risk.
  • Potential for non-invasive assessment of infarct size based on coronary anatomy.
  • Highlights the link between coronary architecture and myocardial perfusion territory.
Abstract