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Reversal of left ventricular dysfunction early after coronary artery bypass grafting
P Voci1, F Bilotta, G Scibilia
1II Cattedra di Cardiologia, Università degli Studi La Sapienza, Roma, Italy.
Insights
Coronary artery bypass grafting (CABG) immediately improves systolic function in dysfunctional heart segments. This recovery is attributed to coronary blood flow redistribution, not drugs, as shown by intraoperative echocardiography.
Area of Science:
- Cardiology
- Cardiac Surgery
- Echocardiography
Background:
- Coronary artery disease (CAD) and chronic stable angina pectoris significantly impact left ventricular systolic function.
- Understanding the immediate effects of surgical intervention on cardiac function is crucial for patient outcomes.
Purpose of the Study:
- To evaluate the early impact of coronary artery bypass grafting (CABG) on left ventricular systolic function.
- To determine if observed functional changes are due to improved blood flow or pharmacological influences.
Main Methods:
- Intraoperative echocardiography was performed on 32 patients undergoing CABG.
- Left ventricular systolic function, including ejection fraction and percent systolic wall thickening (PSWT), was assessed before and after cardiopulmonary bypass.
- Myocardial segments were classified as dysfunctional (PSWT < 30%) or normal (PSWT > 30%) and analyzed for changes.
Main Results:
- Post-CABG, dysfunctional myocardial segments showed a significant increase in PSWT (from 11.8% to 24.3%, p < 0.001).
- Normal myocardial segments exhibited a decrease in PSWT (from 46.2% to 33.4%, p < 0.001), indicating reduced compensatory hyperfunction.
- Ejection fraction also demonstrated a significant improvement after CABG (from 47.2% to 58.5%, p < 0.05).
Conclusions:
- CABG leads to immediate recovery of systolic function in previously dysfunctional myocardial segments.
- The observed improvement is likely due to the redistribution of coronary blood flow, not pharmacological agents.
- Intraoperative echocardiography is a valuable tool for monitoring left ventricular function during and after cardiac surgery.
Abstract:
This study evaluated the early effect of coronary artery bypass grafting (CABG) on left ventricular systolic function. Intraoperative echocardiography was performed in 32 patients with coronary artery disease and chronic, stable angina pectoris. Left ventricular short-axis images at mid-papillary muscle level were videotaped at similar loading conditions shortly after pericardiotomy and 28 +/- 5 min after weaning from cardiopulmonary bypass. Inotropic or vasodilator administration was avoided or suspended at least 5 min before echocardiography. The left ventricle was divided off-line into 8 segments. The ejection fraction and percent systolic wall thickening (PSWT) were calculated pre- and post-CABG. A total of 256 myocardial segments were analyzed. Any segment showing a preoperative PSWT of less than 30% was considered dysfunctional, while segments with a PSWT of greater than 30% were considered normal. After surgery, the PSWT in 162 dysfunctional segments (63%) increased from 11.8 +/- 8.9 to 24.3 +/- 14.3% (p less than 0.001). Conversely, a reverse trend was found in the remaining 94 normal segments (37%) with a decreasing PSWT from 46.2 +/- 13.8 to 33.4 +/- 14.8% (p less than 0.001). Ejection fraction also increased from 47.2 +/- 3.5 to 58.5 +/- 18.9% (p less than 0.05). Thus, CABG is followed by an immediate recovery of systolic function in dysfunctional myocardial segments, while compensatory hyperfunction is reduced in normal segments. These results indicate that the post-CABG improvement in PSWT is due to redistribution of coronary blood flow, rather than to pharmacological or hormonal influences. Intraoperative echocardiography is a useful technique to monitor left ventricular function during surgery.
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