Published June 2021 | Version v1
Journal article

Patient dose assessment and optimisation of pelvic radiography with computed radiography systems

  • 1. Department of Biomedical Engineering Technology, Faculty of Health and Allied Sciences, Koforidua Technical University, P.O. Box KF-981, Koforidua (Ghana)
  • 2. Department of Medical Physics, School of Nuclear and Allied Sciences, University of Ghana, Atomic Energy Campus, P.O. Box AE 1, Atomic Energy-Accra (Ghana)
  • 3. Radiation Protection and Consultancy Centre, Radiation Protection Institute, Ghana Atomic Energy Commission, P.O. Box LG 80, Legon-Accra (Ghana)
  • 4. Department of Nuclear Medicine, National Centre for Radiotherapy and Nuclear Medicine, Korle-Bu Teaching Hospital, P.O. Box 77 (Ghana)
  • 5. Department of Applied Physics, Faculty of Applied Sciences, University for Development Studies, Navrongo Campus, Upper East Region, P.O. Box TL 1350, Tamale (Ghana)
  • 6. Department of Radiography, School of Biomedical and Allied Health Science, College of Health Sciences, University of Ghana, P.O. Box KB143, Korle-Bu Campus, Accra (Ghana)

Description

Digital radiography systems can reduce radiation dose, this capability was harnessed to explore dose and image quality (IQ) optimisation strategies. Entrance surface dose (ESD), effective dose (ED) and organ doses were determined by the indirect method for patients undergoing pelvic anteroposterior X-ray examinations with computed radiography systems. The IQ of patients' radiographs was assessed in terms of signal-to-noise ratio (SNR). An anthropomorphic phantom was exposed with varying tube potential (kVp), tube current-time product (mAs), and focus-to-detector distance (FDD) to determine phantom-entrance dose for the optimisation studies. SNR of each phantom radiograph was determined. Patients' mean ESD of 2.38 #+-# 0.60 mGy, ED of 0.25 #+-# 0.07 mSv and SNR of 8.5 #+-# 2.2 were obtained. After optimisation, entrance dose was reduced by 29.2% with 5 cm increment in FDD, and 5 kVp reduction in tube potential. kVp and/or mAs reduction with an increment in FDD reduced entrance dose without adversely compromising radiographic-IQ. (authors)

Availability note (English)

Available from doi: http://dx.doi.org/10.1093/rpd/ncab111

Additional details

Identifiers

Publishing Information

Journal Title
Radiation Protection Dosimetry
Journal Volume
195
Journal Issue
1
Journal Page Range
p. 41-49
ISSN
0144-8420

Optional Information

Notes
55 refs.