Improved Efficiency of Intraventricular Blood Flow Transit Under Cardiac Stress: A 4D Flow Dobutamine CMR Study

Jonathan Sundin1, Jan Engvall1,2, Eva Nylander1,2

  • 1Unit of Cardiovascular Sciences and Center for Medical Image Science and Visualization, Department of Health, Medicine and Caring Sciences, Linköping University, Linköping, Sweden.

Insights

Increasing heart rate, inotropy, and lusitropy improves intraventricular blood flow efficiency. Dobutamine infusion enhanced Direct Flow (DF) volume and kinetic energy, indicating better left ventricular (LV) pumping function.

Area of Science:

  • Cardiovascular Physiology
  • Biomedical Engineering
  • Medical Imaging

Background:

  • The impact of heart rate, inotropy, and lusitropy on human heart blood flow patterns and energetics is not well understood.
  • Reduced Direct Flow (DF) volume and kinetic energy (KE) are linked to inefficient left ventricular (LV) pumping and dysfunction in heart failure.

Purpose of the Study:

  • To investigate the effects of dobutamine infusion on LV 4D blood flow patterns and energetics in healthy subjects.
  • To test the hypothesis that increased heart rate, inotropy, and lusitropy enhance intraventricular blood flow transit efficiency.

Main Methods:

  • Acquired 4D flow and cardiovascular magnetic resonance (CMR) data in 12 healthy subjects at rest and during dobutamine infusion.
  • Analyzed LV blood flow components by tracing pathlines from end-diastolic (ED) LV blood volume.
  • Calculated KE/mL blood volume at ED for each flow component.

Main Results:

  • Dobutamine increased heart rate (64%), systolic blood pressure, and stroke volume.
  • The proportion of Direct Flow (DF), an efficient flow component, increased significantly (p < 0.001).
  • Kinetic energy (KE)/mL at ED increased for all flow components, with DF showing the largest increase.

Conclusions:

  • Feasible to compare 4D flow patterns at rest and during stress in the human heart.
  • Dobutamine-induced increases in heart rate, inotropy, and lusitropy improve intraventricular blood flow transit efficiency.
  • Changes in DF volume and pre-systolic KE may offer novel assessments of LV function and dysfunction under stress.

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