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Updated: Aug 10, 2026

Myocardial Infarction and Functional Outcome Assessment in Pigs
Published on: April 25, 2014
Incomplete, delayed functional recovery late after reperfusion following acute myocardial infarction: "maimed
Abstract:
The objective of the current editorial is to introduce a new concept ("maimed myocardium") that we believe describes more accurately the incomplete, delayed recovery of LV function that may occur late after reperfusion after AMI. It has been demonstrated previously that myocardium remains viable for a prolonged period in many patients with nonsustained coronary occlusion, despite the occurrence of myocardial necrosis; late reperfusion may result in myocardial salvage in reversibly ischemic (stunned) segments (complete recovery) and in intensely injured (maimed) segments that display partial return of LV function over time (incomplete recovery). Clinically, the basis for maimed myocardium is the observation that delayed, LV functional recovery may occur in partially infarcted segments where there has been an antecedent ischemic insult of sufficient duration to result in some degree of myocardial necrosis. Certain acute coronary syndromes characterized by nonsustained coronary occlusion followed by spontaneous reperfusion (e.g., non-Q-wave AMI) or drug-induced reperfusion induced by the exogenous administration of thrombolytic therapy are associated with incomplete, delayed recovery of LV function as detected clinically by partial improvement in serial radionuclide-ejection measurement, enhanced metabolic integrity of cardiac tissue by F-18 deoxyglucose myocardial imaging, and scintigraphic findings of reverse thallium redistribution--findings that support the presence of partially viable myocardium that has been incompletely salvaged during reperfusion late after AMI. Experimentally, delayed LV functional recovery has been reported in animal models in which prolonged coronary occlusion (hours to days) followed by reperfusion is associated with late recovery of regional LV function in myocardial segments subtending border (stunned) zones and central infarct (maimed) zones. In studies in animals and human beings, postextrasystolic potentiation and pharmacologic inotropic interventions may augment maimed and stunned segments, although the magnitude of regional contractile reserve that can be unmasked with these interventions is quantitatively less in the maimed than in stunned segments. In summary, the propensity of intensely injured or partially infarcted LV segments to display intermediate functional recovery followed by reperfusion late after coronary occlusion suggests that even severely depressed but residually viable cardiac muscle can be salvaged incompletely over time.(ABSTRACT TRUNCATED AT 400 WORDS)
Insights
Introducing "maimed myocardium," a concept describing incomplete recovery of left ventricular (LV) function after reperfusion injury following acute myocardial infarction (AMI). This highlights viable but injured heart muscle that shows delayed functional improvement over time.
Area of Science:
- Cardiology
- Cardiovascular Physiology
- Myocardial Infarction Research
Background:
- Myocardium can remain viable despite necrosis after acute myocardial infarction (AMI).
- Late reperfusion can salvage reversibly ischemic (stunned) and intensely injured (maimed) myocardial segments.
- Maimed myocardium exhibits incomplete, delayed recovery of left ventricular (LV) function post-reperfusion.
Discussion:
- The concept of maimed myocardium explains delayed LV functional recovery in partially infarcted segments after ischemic insult.
- Clinical observations in acute coronary syndromes show incomplete LV function recovery.
- Experimental models corroborate delayed functional recovery in maimed myocardial zones post-reperfusion.
Key Insights:
- Maimed myocardium is characterized by partial, delayed LV functional recovery.
- Clinical evidence includes improved radionuclide ejection fraction and metabolic imaging.
- Animal studies confirm late functional recovery in central infarct zones.
Outlook:
- Further research into the mechanisms of maimed myocardium is warranted.
- Understanding contractile reserve in maimed segments can inform therapeutic strategies.
- This concept refines our understanding of myocardial salvage and recovery post-AMI.
Related Concept Videos
Myocarditis I: Introduction
Secondary Spinal Cord Injury llI: Pathophysiology

