Echocardiographic parameters in clinical responders to surgical pericardiectomy - A single center experience with
Devendra V Patil1, Girish R Sabnis1, Milind S Phadke1
1Department of Cardiology, Seth G.S. Medical College and King Edward VII Memorial Hospital, Mumbai, India.
Insights
Surgical pericardiectomy significantly improves echocardiographic markers in patients with chronic constrictive pericarditis (CCP). Echocardiography reveals reduced congestion and improved diastolic function after surgery, indicating successful treatment for CCP.
Area of Science:
- Cardiology
- Cardiac Surgery
- Diagnostic Imaging
Background:
- Chronic constrictive pericarditis (CCP) poses a significant health burden, particularly in developing nations due to tuberculous pericarditis.
- Surgical pericardiectomy is a potential cure for CCP, but detailed echocardiographic data post-surgery is limited.
- This study investigates echocardiographic changes in relation to clinical status after pericardiectomy for CCP.
Purpose of the Study:
- To evaluate the impact of surgical pericardiectomy on echocardiographic parameters in patients with chronic constrictive pericarditis (CCP).
- To correlate pre-operative and post-operative echocardiographic findings with clinical response to surgery.
Main Methods:
- Twenty-three patients with CCP underwent pre-operative and post-operative echocardiographic evaluations.
- Patients were classified as 'responders' if they had residual symptoms of New York Heart Association (NYHA) class II or below.
- Clinical and echocardiographic data were compared before and after pericardiectomy.
Main Results:
- Pericardiectomy significantly reduced vena caval congestion (100% to 15%) and left atrial size.
- Diastolic function improved, evidenced by reduced respiratory variation in mitral and tricuspid E velocities and normalization of 'annulus reversus'.
- The ratio of mitral E to medial e' (E/e') significantly increased post-surgery, indicating improved diastolic filling.
Conclusions:
- Surgical pericardiectomy leads to significant improvements in echocardiographic parameters among clinical responders with CCP.
- Key improvements include reduced vena caval congestion, decreased left atrial size, and enhanced diastolic function.
- Echocardiography is crucial for assessing treatment efficacy and guiding management in post-pericardiectomy patients.
Background:
Chronic constrictive pericarditis (CCP) is the end result of chronic inflammation of the pericardium. Developing countries continue to face a significant burden of CCP secondary to tuberculous pericarditis. Surgical pericardiectomy offers potential cure. However, there is paucity of echocardiography data in post-pericardiectomy patients vis-a-vis their clinical status. We studied the changes in multiple echocardiographic parameters in these patients before and after pericardiectomy.
Methods:
Twenty-three patients (14 men, 9 women) who underwent pericardiectomy for CCP in the last 5 years (from January 2009 to December 2014) were subjected to detailed clinical and echocardiographic evaluation during the study period (between June 2013 and December 2014). Patients with residual symptoms of NYHA class II and below were considered as 'responders'. The data thus obtained were compared to the pre-operative parameters.
Results:
After pericardiectomy, the incidence of vena caval congestion decreased from 100% to 15% (p<0.001). There was significant reduction in the mean left atrial size from 39.33±10.52mm to 34.45±10.08mm (p<0.001) and also the ratio of left atrium to aortic annulus from 1.93 to 1.69 (p<0.001) among 'responders' to pericardiectomy. Septal bounce was observed to persist in 5 (25%) patients after pericardiectomy. There was significant respiratory variation of 39.23±15.11% in the mitral E velocity before pericardiectomy. After pericardiectomy, this variation reduced to 14.43±7.76% (p<0.001). There was also significant reduction in the respiratory variation in tricuspid E velocities from 31.33±18.81% to 17.35±16.26% (p<0.001). After pericardiectomy, the mean ratio of mitral annular velocities, medial e': lateral e', reduced from 1.08 to 0.87 (p<0.03). The phenomenon of 'annulus reversus' was found to persist in 6 'responders', thereby reflecting a 50% reduction in its incidence after pericardiectomy (p<0.001). The ratio of mitral E to medial e' (E/e') increased from 4.21±1.35 before pericardiectomy to 6.91±2.62 after pericardiectomy (p=0.001).
Conclusion:
Among clinical responders to surgical pericardiectomy, echocardiographic assessment revealed a significant reduction in vena caval congestion, LA size, ratio of LA to aortic annulus, septal bounce, respiratory variation in mitral and tricuspid E velocities, mitral annular medial e' and the phenomenon of annulus reversus. Also, there was a significant rise in minimum tricuspid and mitral E velocities and the E/e' ratio.
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