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Published on: May 26, 2015
Radiation Reduction Through the Use of a Novel Ultra-Low Dose Fluoroscopy Imaging Protocol in Congenital Cardiac
Kamel Shibbani1,2, Henri Justino3, Howaida El-Said3
1Division of Cardiology, Department of Pediatrics, Rady Children's Hospital, University of California-San Diego, San Diego, CA, USA. kshibbani@uiowa.edu.
Insights
A novel ultra-low dose fluoroscopy protocol (ULDFP) significantly reduces radiation exposure in pediatric cardiac catheterization. This approach, minimizing cine angiography, achieved over 90% dose reduction compared to benchmarks.
Area of Science:
- Pediatric Cardiology
- Interventional Radiology
- Medical Imaging
Background:
- Radiation exposure during congenital heart disease procedures poses risks, particularly for pediatric patients.
- Minimizing radiation is crucial, necessitating advances in imaging and adherence to the ALARA principle.
Purpose of the Study:
- To evaluate the radiation reduction achieved by a novel ultra-low dose fluoroscopy protocol (ULDFP).
- To assess the impact of ULDFP on pediatric patients undergoing interventional cardiac catheterization.
Main Methods:
- Retrospective, single-center study of pediatric patients undergoing specific cardiac procedures (ASD closure, coarctation angioplasty, PDA closure, valvuloplasty).
- Comparison of radiation doses from ULDFP against published benchmarks and registry data.
- Phantom studies to validate radiation reduction with ULDFP versus standard protocol.
Main Results:
- Significant reduction in radiation exposure for pediatric interventional cardiac catheterization procedures.
- Dose reduction exceeded 90% compared to benchmark data and 85% compared to registry data.
- Near-elimination of cine angiography and use of ULDFP were key factors in dose reduction.
Conclusions:
- The novel ULDFP, combined with minimal cine angiography, drastically reduces radiation dose in pediatric cardiac catheterization.
- This reduction is significant even when compared to current registry data.
- Lowering radiation exposure in this vulnerable population may reduce associated morbidity.
Abstract:
Increased radiation exposure during congenital heart disease procedures may have a detrimental effect on patients, especially in the pediatric population. Advances in imaging systems and adherence to the ALARA (As Low As Reasonably Achievable) principle are paramount in minimizing radiation exposure. This is a single center, retrospective study designed to understand the degree of radiation reduction achievable with a novel ultra-low dose fluoroscopy protocol (ULDFP). Patients were included in the study if they underwent any one of the following procedures between 12/1/2021 and 12/31/2023: atrial septal defect (ASD) device closure, coarctation balloon or stent angioplasty, patent ductus arteriosus (PDA) closure, pulmonary valvuloplasty, and aortic valvuloplasty. Our radiation doses were compared to published benchmarks and current registry data. Phantom studies were done to evaluate the radiation reduction achieved by using the novel ULDFP as compared to our standard protocol. We report significant reduction in radiation exposure for pediatric patients undergoing interventional cardiac catheterization procedures achieved predominantly by near-complete elimination of cine angiography and use of ULDFP. Values reported in this study represent a dose reduction of greater than 90% compared to current benchmark doses by Cevallos [1] et al. and Lamers [2] et al., and greater than 85% compared to current CRISP registry data. Use of an ULDFP and the near elimination of cine angiography drastically reduces radiation dose in pediatric patients undergoing cardiac catheterization procedures even when compared to current registry data. Reducing radiation exposure in this vulnerable cohort may potentially play a significant role in lowering morbidity associated with cardiac catheterization.
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