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Pre- and post-pericardiocentesis echo-Doppler features of effusive-constrictive pericarditis compared with cardiac
William R Miranda1, Darrell B Newman1, Lawrence J Sinak1
1Department of Cardiovascular Medicine, Mayo Clinic, 200 First St SW, Rochester, MN, USA.
Insights
Effusive-constrictive pericarditis (ECP) shows distinct echocardiogram-Doppler findings differentiating it from cardiac tamponade and constrictive pericarditis (CP). These unique echo-Doppler features may allow for ECP diagnosis before pericardiocentesis.
Area of Science:
- Cardiology
- Medical Imaging
- Echocardiography
Background:
- Effusive-constrictive pericarditis (ECP) is a complex condition that can be challenging to diagnose.
- Distinguishing ECP from cardiac tamponade and constrictive pericarditis (CP) is crucial for appropriate management.
Purpose of the Study:
- To review 2D and Doppler echocardiographic findings in patients with ECP.
- To compare these findings with those in patients with cardiac tamponade and surgically-proven CP.
Main Methods:
- Retrospective analysis of 22 ECP patients with persistent jugular venous pressure post-pericardiocentesis.
- Comparison with 30 CP and 30 cardiac tamponade patients.
- Echocardiographic parameters including e' velocities, hepatic vein flow, and mitral E/A ratios were analyzed.
Main Results:
- ECP patients exhibited higher medial and lateral e' velocities compared to tamponade.
- Both ECP and tamponade showed decreased hepatic vein diastolic forward flow, which increased post-pericardiocentesis.
- Hepatic vein diastolic reversal velocities remained unchanged in ECP but decreased in tamponade post-pericardiocentesis.
Conclusions:
- ECP may possess unique echocardiographic-Doppler signatures that aid in its diagnosis.
- Echocardiography could potentially diagnose ECP prior to pericardiocentesis.
- ECP generally has a favorable prognosis, especially in acute presentations.
Aims:
To review 2D and Doppler findings in patients diagnosed with effusive-constrictive pericarditis (ECP) and compare these to patients with cardiac tamponade and patients with surgically-proven constrictive pericarditis (CP).
Methods And Results:
We identified 22 patients diagnosed with ECP at Mayo Clinic, MN, USA between 2002 and 2016 who had persistent elevation of jugular venous pressure post-pericardiocentesis. We compared them to 30 patients with CP and 30 patients with cardiac tamponade who had normalization of venous pressure post-pericardiocentesis. All patients were in sinus rhythm. Mean age was 57 ± 18 years in the ECP group; 36% were females. Most ECP and cardiac tamponade cases were idiopathic (41% and 33%, respectively). Prior to pericardiocentesis, medial and lateral e' velocities were higher in ECP compared with tamponade; both ECP and tamponade patients had markedly decreased hepatic vein diastolic forward flow velocities. Inspiratory and expiratory mitral E/A ratios were higher in ECP compared with tamponade, but lower than those observed in CP. Post-pericardiocentesis, hepatic vein diastolic forward flow velocities increased in both ECP and tamponade. Hepatic vein diastolic reversal velocities decreased in tamponade but were unchanged in ECP. During median follow-up of 481 days, three patients required pericardiectomy for CP; they were all in the ECP group (14% of ECP cases).
Conclusion:
ECP may have unique echo-Doppler features that distinguish it from both CP and tamponade. Our findings suggest that ECP could be diagnosed by echocardiography even prior to pericardiocentesis. ECP appears to have a good prognosis, particularly in patients presenting acutely.
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