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Testing the Efficacy of Pharmacological Agents in a Pericardial Target Delivery Model in the Swine
Published on: July 7, 2016
Dose to cardiologists in haemodynamic and electrophysiology cardiac interventional procedures
A Trianni1, R Padovani, C Foti
1Medical Physics Department, S. Maria della Misericordia Hospital, Piazzale S. Maria della Misericordia, 11, 33100 Udine, Italy. trianni.annalisa@aoud.sanita.fvg.it
Insights
Staff radiation exposure during interventional cardiology procedures is lower than reported elsewhere due to strict radiation protection policies. Yearly extrapolated occupational doses for cardiologists remain below regulatory limits.
Area of Science:
- Cardiology
- Medical Physics
- Occupational Health
Background:
- Interventional cardiac procedures utilize fluoroscopy, leading to potential significant radiation exposure for staff.
- Assessing and managing occupational radiation exposure is crucial for protecting healthcare professionals.
Purpose of the Study:
- To evaluate the effective radiation dose received by operators during interventional cardiac procedures.
- To compare these doses with existing literature and regulatory limits.
Main Methods:
- Radiation exposure was assessed in 173 procedures.
- Key metrics recorded included fluoroscopy time, image acquisition count, and dose-area product.
- Occupational doses were measured using thermoluminescence dosemeters.
Main Results:
- Effective doses to operators were generally lower than those reported in other centers.
- Higher effective doses were observed during defibrillator implantation and percutaneous transluminal coronary angiography.
- Extrapolated yearly occupational doses for cardiologists were below the regulatory limit and within the lower range of published data.
Conclusions:
- The center's strict radiation protection policy likely contributes to lower operator radiation exposure.
- Occupational doses in this setting are managed effectively, remaining below established safety thresholds.
Abstract:
Interventional cardiac procedures can be complex and involve extensive use of low dose rate fluoroscopy and high dose rate in image acquisition mode; hence, staff may receive significant radiation exposure. Radiation exposure to operators was assessed in 173 procedures. Fluoroscopy time, number of acquired images and dose-area product were recorded and occupational dose assessed with thermoluminescence dosemeters. The effective dose to the operator was compared with relevant literature data: values found were generally lower than those reported for other interventional cardiology laboratories. This is probably because of the strict radiation protection policy in our centre. Higher effective doses were found for defibrillator implantation and percutaneous transluminal coronary angiography procedures; for other cardiac procedures, effective dose was lower. Yearly extrapolated occupational doses to cardiologists are lower than the regulatory dose limit and in the lower band of doses reported in the literature.
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