Related Experiment Video
Updated: Jul 19, 2026

Surgical Swine Model of Chronic Cardiac Ischemia Treated by Off-Pump Coronary Artery Bypass Graft Surgery
Published on: March 27, 2018
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.
Abstract:
In animal studies, sympathetically mediated coronary vasoconstriction has been demonstrated during exercise. Human studies examining coronary artery dynamics during exercise are technically difficult to perform. Recently, noninvasive transthoracic Duplex ultrasound studies demonstrated that 1) patients with left internal mammary artery (LIMA) grafts to the left anterior descending artery can be imaged and 2) the LIMA blood flow patterns are similar to those seen in normal coronary arteries. Accordingly, subjects with LIMA to the left anterior descending artery were studied during handgrip protocols as blood flow velocity in the LIMA was determined. Beat-by-beat analysis of changes in diastolic coronary blood flow velocity (CBV) was performed in six male clinically stable volunteers (60 +/- 2 yr) during two handgrip protocols. Arterial blood pressure (BP) and heart rate (HR) were also measured, and an index of coronary vascular resistance (CVR) was calculated as diastolic BP/CBV. Fatiguing handgrip performed at [40% of maximal voluntary contraction (MVC)] followed by circulatory arrest did not evoke an increase in CVR (P = not significant). In protocol 2, short bouts of handgrip (15 s) led to increases in CVR (18 +/- 3% at 50% MVC and 20 +/- 8% at 70% MVC). BP was also increased during handgrip. Our results reveal that in conscious humans, coronary vasoconstriction occurs within 15 s of onset of static handgrip at intensities at or greater than 50% MVC. These responses are likely to be due to sympathetic vasoconstriction of the coronary circulation.
More Related Videos
09:04Skeletal Muscle Neurovascular Coupling, Oxidative Capacity, and Microvascular Function with 'One Stop Shop' Near-infrared Spectroscopy
Published on: February 20, 2018
05:25Surgical Porcine Model of Chronic Myocardial Ischemia Treated by Exosome-laden Collagen Patch and Off-pump Coronary Artery Bypass Graft
Published on: September 15, 2023