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Published on: June 12, 2021
Cardiac Tamponade Secondary to Hemorrhagic Pericardial Effusion: A Complication of STEMI
Marvin Kajy1, Amy Rechenberg1, Connor Kerndt2
1Department of Cardiology, Spectrum Health, Michigan State University, Grand Rapids, MI.
Insights
A large pericardial effusion in ST-segment elevation myocardial infarction (STEMI) indicates a severe heart attack. Prompt surgical repair of left ventricular free-wall rupture is crucial for survival in such cases.
Area of Science:
- Cardiology
- Cardiac Surgery
- Emergency Medicine
Background:
- Pericardial effusions in ST-segment elevation myocardial infarction (STEMI) are typically small and asymptomatic.
- Severe pericardial effusion can lead to cardiac tamponade and hemodynamic instability.
- Potential causes include left ventricular free-wall rupture, hemorrhagic pericarditis, or aortic dissection.
Observation:
- A 65-year-old male presented with chest pain and hemodynamic instability, consistent with anterior STEMI.
- Echocardiogram revealed a large, complex pericardial effusion with cardiac tamponade.
- Computed tomography showed hemopericardium, but the etiology remained unclear.
Findings:
- Emergent thoracotomy identified and repaired a left ventricular free-wall rupture.
- Coronary artery bypass grafting was performed.
- The patient remained asymptomatic at 2-year follow-up.
Implications:
- Hemodynamic compromise in STEMI requires rapid differentiation between pump failure and other critical conditions.
- Hemorrhagic pericardial effusion in STEMI signifies a severe infarct, guiding decisions between catheterization lab or operating room interventions.
Abstract:
Background: Most pericardial effusions that occur in the setting of ST-segment elevation myocardial infarction (STEMI) are small, simple, and without symptomology. However, in its most severe form, pericardial effusion can precipitate cardiac tamponade, and when untreated, can cause abrupt hemodynamic instability. Pericardial effusion may be a manifestation of left ventricular free-wall rupture, hemorrhagic pericarditis, or aortic dissection involving a coronary artery. Case Report: We describe the case of a 65-year-old male who experienced chest pain for several days prior to admission but delayed seeking care because he wished to avoid coronavirus disease 2019 exposure. Upon arrival, he was hemodynamically unstable. Electrocardiogram was consistent with anterior STEMI. Bedside echocardiogram demonstrated a hypertrophic left ventricle with preserved function and a large, complex pericardial effusion with cardiac tamponade physiology. Computed tomography of the chest identified hemopericardium but was unable to delineate etiology. The patient underwent emergent thoracotomy because of persistent shock, and during the surgery, left ventricular free-wall rupture was identified and repaired. Coronary artery bypass grafting to the patient's left anterior descending artery was also performed. The patient remained asymptomatic at 2-year follow-up. Conclusion: The differential for hemodynamic compromise in a patient with STEMI is broad, but quickly distinguishing pump failure from other life-threatening causes of shock is imperative to dictate time-sensitive management decisions. The presence of a hemorrhagic pericardial effusion in the setting of STEMI is a surrogate marker for a severe infarct and can help the bedside physician determine whether a patient will be better served in the catheterization lab for revascularization or in the operating room for surgical repair.
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