An audit of physical waste and fluoroscopy energy consumption in vascular surgery and suggestions for the future.
retrospective_cohort · Level III
Where this comes from
- Record sourced from PubMed, PMID 40122310.
- Also identified by DOI 10.1016/j.jvs.2025.03.186.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
Hospitals are responsible for 4% to 5% of global greenhouse gas production and are significant contributors to climate change. We sought to understand the contributions of vascular surgery to the carbon footprint of hospitals by examining emissions from fluoroscopy and physical waste across common vascular surgeries. Vascular operations at a single tertiary hospital were prospectively audited for physical waste. Additional cases from the same hospital were audited retrospectively for energy expenditure during fluoroscopy digital subtraction angiography (DSA). The fluoroscopy time (minutes), number of DSA runs, amplitude, and voltage were recorded, and subsequently, power (kW) and energy (kWh) were calculated. The operations were separated into cohorts based on operation: endovascular aneurysm repair, thoracic endovascular aortic repair, transcarotid artery revascularization (TCAR), carotid endarterectomy, femoral endarterectomy with iliac intervention, lower extremity bypass, endovascular lower extremity revascularization. Using a certified Greenhouse Gas Equivalencies Calculator from the United States Environmental Protection Agency, total carbon dioxide emissions (CO2e) were estimated. Eighteen vascular operations were audited for physical waste. Lower extremity bypasses produced the largest amount of CO2e from physical waste (85.75 kg CO2e; 95% confidence interval [CI], 71.4-100.2 kg), whereas the least was produced by carotid endarterectomy (57.22 kg CO2e; 95% CI, 48.7-65.7 kg). No significant correlation was seen between operative length and amount of waste. Ninety-seven operations were retrospectively audited for fluoroscopy energy use during DSA runs. Endovascular aortic repair produced the largest CO2e from DSA runs (41.11 kg; 95% CI, 28.82-53.40 kg), whereas the least was produced by TCAR (7.33 kg; 95% CI, 5.15-9.49 kg). When DSA CO2e were analyzed against fluoroscopy time, thoracic endovascular aortic repair produced CO2e at the highest rate of 3.63 kg/min DSA, whereas TCAR produced CO2e at the lowest rate of 1.37 kg/min DSA. Although no linear correlation was found between operation length and CO2e from waste (r<sup>2</sup> = 0.099), a linear correlation was found between fluoroscopy time and CO2e (r<sup>2</sup> = 0.76). Vascular operations, on average, generate 108.47 kg of CO2e from waste and fluoroscopy, the equivalent of driving an average gasoline-powered vehicle for 278 miles. This study found a correlation between increased fluoroscopy time and CO2e. It also found that the rate of emissions differs between different operations, suggesting a role in optimizing fluoroscopy and intraoperative techniques to lower emissions. Efforts to track current energy output from imaging devices, investing in efficient devices, and adjusting intraoperative settings may all play a role in decreasing vascular surgery's environmental footprint.
Medical subject headings
- Vascular Surgical Procedures
- Angiography, Digital Subtraction
- Medical Waste
- Radiography, Interventional