Vasoconstriction seen in coronary bypass grafts during handgrip in humans

Afsana Momen1, Amir Gahremanpour, Ather Mansoor

  • 1Penn State Heart and Vascular Institute, Pennsylvania State Univ. College of Medicine, Hershey, PA 17033, USA.

Insights

In humans, static handgrip exercise at 50% maximal voluntary contraction (MVC) or greater triggers rapid coronary vasoconstriction within 15 seconds. This response is likely mediated by sympathetic nervous system activation affecting coronary vascular resistance.

Area of Science:

  • Cardiovascular Physiology
  • Exercise Physiology
  • Autonomic Nervous System Function

Background:

  • Animal studies suggest sympathetic stimulation causes coronary vasoconstriction during exercise.
  • Human studies on coronary artery dynamics during exercise are challenging.
  • Noninvasive ultrasound can now image left internal mammary artery (LIMA) grafts and assess blood flow.

Purpose of the Study:

  • To investigate coronary vascular responses to static handgrip exercise in humans.
  • To determine if sympathetic vasoconstriction occurs in the human coronary circulation during exercise.

Main Methods:

  • Six healthy male volunteers with LIMA grafts underwent two handgrip protocols.
  • Coronary blood flow velocity (CBV) in the LIMA was measured using transthoracic Duplex ultrasound.
  • Arterial blood pressure (BP) and heart rate (HR) were recorded; coronary vascular resistance (CVR) was calculated.

Main Results:

  • Fatiguing handgrip at 40% MVC did not alter CVR.
  • Short bouts of handgrip at 50% MVC and 70% MVC increased CVR by 18% and 20%, respectively.
  • BP increased during handgrip, but CVR changes indicated vasoconstriction.

Conclusions:

  • Conscious humans exhibit coronary vasoconstriction within 15 seconds of static handgrip at 50% MVC or higher.
  • This rapid coronary vasoconstriction is likely mediated by sympathetic nervous system activation.
  • These findings provide evidence for sympathetic control of the human coronary circulation during exercise.