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Therapeutic value of muscular counterpulsation after coronary bypass grafting operation
Larry V Lapanashvili1, Yuriy I Buziashvili, Simon T Matskeplishvili
1Marji Ltd Medical Center, Tbilisi, Georgia, USA. larry@marji.net
Insights
Muscular counterpulsation (MCP) effectively reduces afterload and postoperative complications in patients undergoing coronary artery bypass grafting (CABG). This noninvasive method significantly shortens hospital stays for ischemic heart disease patients.
Area of Science:
- Cardiovascular Surgery
- Medical Devices
- Hemodynamics
Background:
- Coronary artery bypass grafting (CABG) is standard for severe coronary artery disease.
- Postoperative heart failure remains a challenge after CABG.
- New treatments for post-CABG complications are of global interest.
Purpose of the Study:
- To evaluate the efficacy of a novel external bioassisted circulation method, muscular counterpulsation (MCP), in patients undergoing CABG.
- To assess the impact of MCP on hemodynamic parameters and postoperative outcomes in ischemic heart disease (IHD) patients.
Main Methods:
- Fifty patients undergoing CABG were randomized into control (n=20) and MCP treatment (n=30) groups.
- The MCP group received 30 minutes of daily treatment for 8 days post-surgery.
- Hemodynamic assessments included ECG, echocardiography, and impedance plethysmography pre- and post-CABG.
Main Results:
- MCP significantly decreased systemic vascular resistance by 36% compared to 16% in the control group.
- Postoperative complications were significantly lower in the MCP group (3% vs. 39%).
- Patients in the MCP group experienced a 28% shorter hospital stay (12.0 vs. 16.8 days).
Conclusions:
- Muscular counterpulsation (MCP) is an effective, noninvasive circulatory support system.
- MCP achieves hemodynamic improvement through afterload reduction.
- MCP use reduces postoperative complications and hospital stay duration.
Objective:
Coronary artery bypass grafting continues to be the operation of choice in patients with severe multiple coronary artery disease. However, there are several unresolved issues such as treatment of postoperative heart failure following bypass surgery. There is worldwide interest in evaluating new treatment methods for this condition. The objective is to determine the effect of a new external, bioassisted circulation-muscular counterpulsation (MCP) method in patients with ischemic heart disease (IHD) undergoing coronary artery bypass grafting (CABG).
Methods:
Fifty patients (age 54 +/- 8) undergoing CABG were included in the present analysis. Patients were randomized into two groups: A control group (n = 20) receiving standard postoperative treatment without counterpulsation and a treatment group (n = 30) undergoing MCP with a cardio-synchronized pulse generator using stimulation electrodes on the lower extremities. Treatment was 30 minutes daily for the eight initial postoperative days in addition to standard therapy. In all patients, a resting electrocardiogram (ECG), two-dimensional echocardiography, and impedance plethysmography of the forearm were carried out pre-CABG and on the eighth postoperative day.
Results:
Follow-up was completed in 94% of the patients. Two patients of the control and one of the treatment group refused follow-up examination. MCP treatment resulted in a 36% decrease of systemic vascular resistance (p < 0.001) compared to a 16% decrease (p = 0.011) in the control group. Postoperative complications occurred in one (3%) patient of the treatment group and in seven (39%) patients of the control group. Compared to the control group, patients in the treatment group had a 28% shorter postoperative hospital stay (12.0 +/- 4.6 days) than in the control group (16.8 +/- 4.4 days) (p < 0.001).
Conclusions:
MCP represents a new, noninvasive, ECG-triggered circulation support system, which is effective for achieving hemodynamic improvement via afterload reduction. The use of MCP decreases postoperative complications and significantly shortens the hospital stay.
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