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Updated: Sep 27, 2026

A Rat Model of Ventricular Fibrillation and Resuscitation by Conventional Closed-chest Technique
Published on: April 26, 2015
Upper and lower limits of vulnerability to sudden arrhythmic death with chest-wall impact (commotio cordis)
Mark S Link1, Barry J Maron, Paul J Wang
1Center for the Cardiovascular Evaluation of Athletes and the Cardiac Arrhythmia Service, New England Medical Center, Tufts University School of Medicine, Boston, Massachusetts, USA. MLink@Lifespan.org
Insights
Impact velocity significantly influences commotio cordis, a form of sudden cardiac death. Baseball impacts at 40 mph were most likely to induce ventricular fibrillation (VF) in swine models.
Area of Science:
- Cardiovascular Research
- Sports Medicine
- Biomechanical Analysis
Background:
- Commotio cordis, or sudden cardiac death from chest-wall blows, occurs in sports.
- Clinical data suggest impact energy is often not extreme, but difficult to quantify.
Purpose of the Study:
- To evaluate the role of impact velocity in causing ventricular fibrillation (VF) during commotio cordis.
- To establish a relationship between impact velocity and VF incidence in an animal model.
Main Methods:
- Juvenile swine underwent chest-wall impacts from baseballs at velocities ranging from 20 to 70 mph.
- Impacts were delivered during the vulnerable repolarization period to assess VF induction.
- Peak left ventricular pressure was measured to correlate with VF occurrence.
Main Results:
- No VF occurred at 20 mph impacts.
- VF incidence increased with velocity, reaching 68% at 40 mph, then decreasing at higher velocities (p < 0.0001).
- Peak left ventricular pressure showed a Gaussian relationship with VF incidence (p < 0.0001).
Conclusions:
- Impact energy is a critical factor in generating VF during chest-wall impacts.
- A specific impact velocity (around 40 mph) demonstrated the highest likelihood of inducing VF.
- The risk of commotio cordis is complexly related to the precise velocity of chest-wall impact.
Objectives:
In an animal model of commotio cordis, sudden death with chest-wall impact, we sought to systematically evaluate the importance of impact velocity in the generation of ventricular fibrillation (VF) with baseball chest-wall impact.
Background:
Sudden cardiac death can occur with chest-wall blows in recreational and competitive sports (commotio cordis). Analyses of clinical events suggest that the energy of impact is often not of unusual force, although this has been difficult to quantify.
Methods:
Juvenile swine (8 to 25 kg) were anesthetized, placed prone in a sling to receive chest-wall strikes during the vulnerable time window during repolarization for initiation of VF with a baseball propelled at 20 to 70 mph.
Results:
Impacts at 20 mph did not induce VF; incidence of VF increased incrementally from 7% with 25 mph impacts, to 68% with chest impact at 40 mph, and then diminished at >/=50 mph (p < 0.0001). Peak left ventricular pressure generated by the chest blow was related to the incidence of VF in a similar Gaussian relationship (p < 0.0001).
Conclusions:
The energy of impact is an important variable in the generation of VF with chest-wall impacts. Impacts at 40 mph were more likely to produce VF than impacts with greater or lesser velocities, suggesting that the predilection for commotio cordis is related in a complex manner to the precise velocity of chest-wall impact.
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