Related Experiment Videos

Modulation of the arterial coronary blood flow by asynchronous activation with ventricular pacing

G Amitzur1, D Manor, A Pressman

  • 1Neufeld Cardiac Research Institute, Sheba Medical Center, Tel Hashomer, Israel.

Insights

Ventricular pacing reduces coronary arterial flow in early activated regions, especially during diastole. This effect is mediated by coronary autoregulation and disappears with vasodilation.

Area of Science:

  • Cardiovascular Physiology
  • Cardiac Electrophysiology
  • Coronary Circulation

Background:

  • Ventricular pacing can lead to asynchronous mechanical activation.
  • The impact of asynchronous activation on coronary blood flow is not fully understood.
  • Coronary autoregulation plays a role in maintaining blood flow despite changes in cardiac activity.

Purpose of the Study:

  • To investigate if ventricular pacing attenuates coronary arterial flow in early activated regions.
  • To compare coronary blood flow during ventricular pacing versus atrial pacing under controlled conditions.
  • To determine if abolishing vascular tone affects the difference in blood flow between pacing modes.

Main Methods:

  • Measured blood flow velocity (BFV) in the left anterior descending (LAD) and left circumflex (CFX) arteries in 14 open-chest dogs.
  • Utilized four pacing sites: right atrium (RAp), mid-right ventricle (RVp), mid-left ventricle (LVp), and left ventricular apex (Apexp).
  • Compared sequential ventriculoatrial (VA) and atrioventricular (AV) pacing protocols under controlled perfusion pressure and intact vascular tone, with and without adenosine.

Main Results:

  • Ventricular pacing (RVp, Apexp) decreased BFV in the LAD by 9.7%-14.6% compared to atrial pacing (RAp, LVp).
  • Wall thickening index was reduced by 50%-64% during ventricular pacing compared to atrial pacing.
  • The reduction in LAD blood flow during ventricular pacing was most pronounced during diastole (16.6%-45.5%) and disappeared after adenosine administration.

Conclusions:

  • Ventricular pacing, particularly at the RVp and Apexp sites, reduces mean and phasic coronary blood flow in the early activated LAD region.
  • Under controlled perfusion pressure with intact vascular tone, ventricular pacing compromises coronary blood flow more than atrial pacing.
  • The observed differences in blood flow are attributed to coronary autoregulation, as they diminish with maximal vasodilation induced by adenosine.
Abstract

Related Concept Videos