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Updated: Sep 3, 2025

Author Spotlight: Enhancing Coronary Artery Revascularization
Published on: September 15, 2023
Intensive Care Unit Bypass for Robotic-Assisted Single-Vessel Coronary Artery Bypass Grafting
Joseph Edwards1, Jose Binongo2, Brian Mullin3
1Department of Anesthesiology, Emory University, Atlanta, Georgia.
Insights
An ultra-fast-track protocol for robotic-assisted coronary artery bypass grafting significantly reduced inpatient costs by 15% without compromising patient outcomes. This enhanced recovery pathway offers a cost-effective approach to cardiac surgery.
Area of Science:
- Cardiovascular Surgery
- Health Economics
- Minimally Invasive Surgery
Background:
- Enhanced recovery after cardiac surgery reduces hospital stay but cost-effectiveness of ultra-fast-track protocols remains undemonstrated.
- Minimally invasive cardiac operations present an opportunity to explore cost reductions.
- Previous fast-track protocols showed reduced length of stay without outcome compromise.
Purpose of the Study:
- To demonstrate cost reduction using an ultra-fast-track protocol after minimally invasive cardiac operations.
- To evaluate the clinical benefits and cost-effectiveness of a defined ICU-bypass protocol.
- To compare inpatient costs and clinical outcomes between conventional and ultra-fast-track recovery groups.
Main Methods:
- 215 patients undergoing robotic-assisted coronary artery bypass grafting were analyzed.
- Patients were stratified into conventional intensive care unit (ICU) recovery or an ICU-bypass protocol.
- Inpatient costs were log-transformed and analyzed using linear regression, adjusted for The Society of Thoracic Surgeons Predicted Risk of Mortality score.
Main Results:
- The ICU-bypass protocol resulted in a 15% reduction in total inpatient costs (GMR, 0.85; P = .0007).
- Total variable direct costs were reduced by 14% (GMR, 0.86; P = .003) compared to conventional ICU care.
- Hospital stay reductions were similar across groups (1.6-1.7 days), with no significant differences in adverse events, including cardiac arrest, 30-day mortality, or stroke.
Conclusions:
- A selective ultra-fast-track ICU-bypass protocol for robotic-assisted coronary artery bypass grafting successfully reduces inpatient costs.
- This protocol maintains short-term clinical outcomes, demonstrating its efficacy and safety.
- Conversion-to-ICU recovery also preserves outcomes and shows a trend toward reduced costs.
Background:
Fast-track and enhanced recovery after cardiac surgical procedures have shown reductions in intensive care unit (ICU) and hospital lengths of stay, with unchanged outcomes. However, cost reduction by an ultra-fast-track protocol after minimally invasive cardiac operations, without compromising clinical benefits, has yet to be demonstrated.
Methods:
A total of 215 consecutive patients underwent robotic-assisted coronary artery bypass grafting, with 156 preoperatively stratified into conventional ICU recovery vs 59 candidates for a defined ICU-bypass protocol involving recovery room and floor care. Of these, 40 candidates completed the protocol, and 19 had conversion-to-ICU recovery. Because of right-skewed distribution, inpatient cost was log-transformed, and linear regression models were constructed to estimate geometric mean ratios (GMRs) comparing inpatient cost for these groups (conventional ICU recovery, ICU-bypass, conversion-to-ICU recovery), adjusted for The Society of Thoracic Surgeons Predicted Risk of Mortality score.
Results:
Compared with the conventional ICU group, the ICU-bypass group conferred a 15% reduction in total inpatient (GMR, 0.85; P = .0007) and a 14% reduction in total variable direct costs (GMR, 0.86; P = .003). Compared with the conventional ICU group, the ICU-bypass and conversion-to-ICU groups had similar net hospital stay reductions (1.6-1.7 days). Relative to the conventional ICU group, ICU and floor duration were shortened after conversion to ICU, with a trend to reduced costs. Cardiac arrest, 30-day mortality, and stroke were absent, and other key adverse events did not differ between groups.
Conclusions:
A selective, successful ultra-fast-track ICU-bypass protocol for robotic-assisted coronary artery bypass grafting reduces inpatient cost without affecting short-term outcomes. Conversion-to-ICU recovery also maintains outcomes and trends toward reduced costs.
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