Dynamic Handgrip Exercise: Feasibility and Physiologic Stress Response of a Potential Needle-Free Cardiac Magnetic

Andreas Ochs1, Michael Nippes1, Janek Salatzki1

  • 1Department of Cardiology, University of Heidelberg, Heidelberg, Germany.

Insights

Dynamic handgrip exercise (DHE) offers a safe and effective physiological stressor for cardiac magnetic resonance (CMR) imaging. This method shows superior chronotropic and non-inferior inotropic effects compared to dobutamine, suggesting potential for diagnosing coronary artery disease (CAD).

Area of Science:

  • Cardiovascular Imaging and Physiology
  • Cardiac Magnetic Resonance (CMR) Applications
  • Myocardial Ischemia Detection

Background:

  • Pharmacological stress-testing with Cardiac Magnetic Resonance (CMR) is established for myocardial ischemia detection but faces limitations due to contraindications, side effects, and costs.
  • Dynamic handgrip exercise (DHE) presents a potential physiological alternative to address these limitations in CMR stress-testing.

Purpose of the Study:

  • To evaluate the feasibility and physiological stress response of DHE in the context of CMR examinations.
  • To compare the effects of DHE with pharmacological dobutamine-stimulation for CMR stress-testing.

Main Methods:

  • Prospective enrollment of two groups: healthy volunteers and patients with known coronary artery disease (CAD).
  • Both-handed, metronome-guided DHE (2 min, 80 contractions/min) performed by all participants.
  • Short axis strain imaging (fast-Strain-ENCoded) acquired at rest, post-DHE, and during dobutamine infusion (in CAD group).

Main Results:

  • DHE induced significant positive chronotropic (heart rate) and inotropic (global longitudinal strain) responses (p < 0.001).
  • DHE's inotropic effect was non-inferior to intermediate dobutamine, while its chronotropic effect was superior (p < 0.001).
  • Minor DHE discontinuation (7%) due to peripheral fatigue; no significant differences in strain response between healthy and CAD groups.

Conclusions:

  • DHE elicits superior chronotropic and comparable inotropic effects to dobutamine, indicating increased myocardial oxygen demand.
  • DHE is a safe, time-saving, and broadly applicable physiological stressor for CMR.
  • Further research is warranted to explore DHE's potential in detecting obstructive CAD.