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ICRP PUBLICATION 120: Radiological protection in cardiology
Insights
Cardiac imaging and interventions increase patient radiation exposure, risking skin injury and cancer. This report updates guidance for cardiologists on radiation protection, dose optimization, and staff safety in cardiac CT, nuclear medicine, and fluoroscopy.
Area of Science:
- Radiological protection in medicine
- Cardiology
- Medical imaging and interventions
Background:
- Cardiac nuclear medicine, CT, interventional cardiology, and electrophysiology procedures are increasing, contributing significantly to patient radiation exposure.
- Complex procedures like percutaneous coronary interventions and electrophysiology carry high radiation doses, potentially causing skin injury and increasing cancer risk.
- Radiation protection for staff in cardiac catheterization labs is crucial, especially when radiological tools are not used correctly.
Purpose of the Study:
- To provide updated guidance for cardiologists on radiation protection in cardiac imaging and interventions.
- To consolidate and update recommendations from previous ICRP publications relevant to cardiology.
- To assist cardiologists in justification procedures and dose optimization for cardiac CT, nuclear medicine, and fluoroscopically guided interventions.
Main Methods:
- Review and synthesis of existing International Commission on Radiological Protection (ICRP) publications relevant to cardiology.
- Focus on imaging procedures and interventions specific to cardiac care.
- Inclusion of updated recommendations reflecting the latest ICRP guidelines.
Main Results:
- The report details biological effects of radiation, principles of radiological protection, and staff protection strategies.
- It emphasizes clinical examples of radiation-related skin injuries from cardiac interventions and methods for dose reduction.
- Guidance is provided on training recommendations and quality assurance programs for cardiac imaging and intervention.
Conclusions:
- Updated guidance is essential for cardiologists to manage radiation risks associated with cardiac procedures.
- Implementing justification, optimization, and quality assurance programs can minimize patient and staff radiation exposure.
- Particular attention to skin injury prevention and staff training is vital in fluoroscopically guided cardiac interventions.
Abstract:
Cardiac nuclear medicine, cardiac computed tomography (CT), interventional cardiology procedures, and electrophysiology procedures are increasing in number and account for an important share of patient radiation exposure in medicine. Complex percutaneous coronary interventions and cardiac electrophysiology procedures are associated with high radiation doses. These procedures can result in patient skin doses that are high enough to cause radiation injury and an increased risk of cancer. Treatment of congenital heart disease in children is of particular concern. Additionally, staff(1) in cardiac catheterisation laboratories may receive high doses of radiation if radiological protection tools are not used properly. The Commission provided recommendations for radiological protection during fluoroscopically guided interventions in Publication 85, for radiological protection in CT in Publications 87 and 102, and for training in radiological protection in Publication 113 (ICRP, 2000b,c, 2007a, 2009). This report is focused specifically on cardiology, and brings together information relevant to cardiology from the Commission's published documents. There is emphasis on those imaging procedures and interventions specific to cardiology. The material and recommendations in the current document have been updated to reflect the most recent recommendations of the Commission. This report provides guidance to assist the cardiologist with justification procedures and optimisation of protection in cardiac CT studies, cardiac nuclear medicine studies, and fluoroscopically guided cardiac interventions. It includes discussions of the biological effects of radiation, principles of radiological protection, protection of staff during fluoroscopically guided interventions, radiological protection training, and establishment of a quality assurance programme for cardiac imaging and intervention. As tissue injury, principally skin injury, is a risk for fluoroscopically guided interventions, particular attention is devoted to clinical examples of radiation-related skin injuries from cardiac interventions, methods to reduce patient radiation dose, training recommendations, and quality assurance programmes for interventional fluoroscopy.
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