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Author Spotlight: Enhancing Coronary Artery Revascularization
Published on: September 15, 2023
Reason and Timing for Conversion to Sternotomy in Robotic-Assisted Coronary Artery Bypass Grafting and Patient
Nickolas K Christidis1, Stephanie A Fox1, Stuart A Swinamer1
1From the Divisions of Cardiac Surgery and.
Insights
Conversion to sternotomy is a bailout for robotically assisted coronary artery bypass grafting (CABG). Anatomical factors, particularly intramyocardial left anterior descending arteries, were primary reasons for conversion, with acceptable in-hospital outcomes.
Area of Science:
- Cardiovascular Surgery
- Minimally Invasive Cardiac Surgery
- Robotic Surgery
Background:
- Robotically assisted coronary artery bypass grafting (CABG) offers a minimally invasive approach.
- Conversion to sternotomy remains a crucial bailout strategy when robotic procedures encounter difficulties.
Purpose of the Study:
- To identify the primary reasons for converting robotically assisted CABG to sternotomy.
- To evaluate the in-hospital outcomes of patients requiring conversion.
Main Methods:
- A prospective review of 72 patients who underwent conversion to sternotomy during robotically assisted CABG between February 2004 and April 2017.
- Analysis of conversion reasons, focusing on endoscopic left internal thoracic artery harvest and left anterior descending (LAD) isolation/anastomosis.
Main Results:
- The overall conversion rate was 12.4%.
- Primary conversion reasons included difficulties during endoscopic left internal thoracic artery harvest (31.9%), LAD isolation (40.3%), and intramyocardial LAD (43.1%).
- In-hospital complications were low, including atrial fibrillation (16.7%), blood transfusion (20.8%), and mediastinitis (4.2%).
Conclusions:
- Anatomical factors, especially related to LAD visualization and harvesting, are the main drivers for conversion from robotic CABG to sternotomy.
- Patients converted to sternotomy demonstrate acceptable in-hospital outcomes with low complication rates.
Objective:
Conversion to sternotomy is a primary bailout method for robotically assisted coronary artery bypass grafting procedures. The aims of this study were to identify the primary reasons for conversion from robotically assisted coronary artery bypass grafting to sternotomy and to evaluate the in-hospital outcomes in such patients.
Methods:
Prospectively collected data from February 2004 to April 2017 were reviewed for 72 patients (56 men; mean age = 63.8 years) who required conversion to sternotomy during a robotically assisted coronary artery bypass grafting procedure with planned endoscopic left internal thoracic artery harvest and anastomosis to the left anterior descending on the beating heart.
Results:
The overall rate of conversion was 12.4% (72/581). Conversions occurred either during attempted endoscopic left internal thoracic artery harvest (31.9%), during endoscopic left anterior descending isolation (40.3%), during manual isolation and anastomosis of the left anterior descending (19.4%), or after anastomosis due to unsatisfactory flow (8.3%). Overall, the most common reason for conversion was an intramyocardial left anterior descending (43.1%). The median stay in the intensive care unit was 1 day (range = 0-20) and the median hospital length of stay was 5 days (range = 3-43). In-hospital complications included new atrial fibrillation (16.7%), need for blood transfusion (20.8%), mediastinitis (4.2%), postoperative myocardial infarction (2.8%), exploration for bleeding (2.8%), and 1 in-hospital death.
Conclusions:
The reasons for conversion were primarily related to anatomical factors that created difficulties for endoscopic left internal thoracic artery harvesting and left anterior descending identification. Patients who required conversion to sternotomy from robotically assisted coronary artery bypass grafting demonstrated acceptable outcomes and low complication rates.
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