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Published on: December 23, 2014
Radiation dose during fluoroscopically guided central venous access device insertion: retrospective observational
M K Badawy1, C J Witkowski2, R Baldoni1
1Monash Imaging, Monash Health, Clayton, VIC 3168, Australia.
Reducing fluoroscopic pulse rates during central venous access device (CVAD) insertions significantly lowers radiation exposure for both patients and healthcare staff. Utilizing a lower pulse rate, such as 4 pulses per second (pps), is recommended to minimize radiation dose.
Area of Science:
- Medical Imaging
- Radiology
- Interventional Procedures
Background:
- Central venous access devices (CVADs) are crucial for intravenous therapy.
- Fluoroscopic guidance during CVAD insertion exposes patients and staff to radiation.
- Optimizing radiation safety during these procedures is essential.
Purpose of the Study:
- To assess patient radiation dose from CVAD insertions via retrospective audit.
- To directly measure staff radiation exposure in simulated procedures.
- To evaluate the impact of different fluoroscopic pulse rates (7.5 pps vs. 4 pps) on radiation exposure.
Main Methods:
- Retrospective audit of Permcath and Hickman line insertions.
- Grouping patients by fluoroscopic pulse rate: 4 pps (n=24) and 7.5 pps (n=33).
- Simulated radiation exposure measurements for radiologist, nurse, and radiographer using a STEP OD-2 monitor and PMMA.
Main Results:
- Median dose area product (DAP) for CVAD insertion was 0.7 Gy·cm² at 7.5 pps and 0.3 Gy·cm² at 4 pps.
- Patient effective dose ranged from 0.1 mSv (4 pps) to 0.22 mSv (7.5 pps).
- Staff whole-body and lens exposure were significantly lower at 4 pps compared to 7.5 pps.
Conclusions:
- Lowering fluoroscopic pulse rates during CVAD insertions significantly reduces radiation dose for patients and staff.
- A statistically significant dose reduction was observed with the lower pulse rate (4 pps).
- Utilizing lower pulse rates during CVAD insertions should be considered to enhance radiation safety.
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