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Technical Paper

An Intercomparison of Counting Efficiency and the Performance of Two Whole-Body Counters According to the Type of Phantom

원문정보

Minjung Pak, Jaeryong Yoo, Wi-Ho Ha, Young-Woo Jin

피인용수 : 0(자료제공 : 네이버학술정보)

초록

영어

Background: Whole-body counters are widely used to evaluate internal contamination of the internal presence of gamma-emitting radionuclides. In internal dosimetry, it is a basic requirement that quality control procedures be applied to verify the reliability of the measured results. The implementation of intercomparison programs plays an important role in quality control, and the accuracy of the calibration and the reliability of the results should be verified through intercomparison. In this study, we evaluated the reliability of 2 whole-body counting systems using 2 calibration methods. Materials and Methods: In this study, 2 whole-body counters were calibrated using a reference male bottle manikin absorption (BOMAB) phantom and a Radiation Management Corporation (RMC-II) phantom. The reliability of the whole-body counting systems was evaluated by performing an intercomparison with International Atomic Energy Agencyto assess counting efficiency according to the type of the phantom. Results and Discussion: In the analysis of counting efficiency using the BOMAB phantom, the performance criteria of the counters were satisfied. The relative bias of activity for all radionuclides was -0.16 to 0.01 in the Fastscan and -0.01 to 0.03 in the Accuscan. However, when counting efficiency was analyzed using the RMC- II phantom, the relative bias of 241Am activity was -0.49 in the Fastscan and 0.55 in the Accuscan, indicating that its performance criteria was not satisfactory. Conclusion: The intercomparison process demonstrated the reliability of whole-body counting systems calibrated with a BOMAB phantom. However, when the RMC-II phantom was used, the accuracy of measurements decreased for low-energy nuclides. Therefore, it appears that the RMC-II phantom should only be used for efficiency calibration for high-energy nuclides. Moreover, a novel phantom capable of matching the efficiency of the BOMAB phantom in low- energy nuclides should be developed.

목차

ABSTRACT
 Introduction
 Materials and Methods
  1. Whole-body counters
  2. Efficiency calibration of whole-body counters
  3. Performance verification of the whole-body counters using the BOMAB phantom
  4. Intercomparison of whole-body counters using sliced BOMAB phantoms
 Results and Discussion
  1. Results of the efficiency calibrations of the whole-bodycounters
  2. Performance testing of whole-body counters using a BOMAB phantom for validation
  3. Results of intercomparison analysis using sliced BOMAB phantoms
 Conclusion
 Acknowledgments
 References

저자정보

  • Minjung Pak Korea Institute of Radiological and Medical Sciences, Seoul, Korea
  • Jaeryong Yoo Korea Institute of Radiological and Medical Sciences, Seoul, Korea
  • Wi-Ho Ha Korea Institute of Radiological and Medical Sciences, Seoul, Korea
  • Young-Woo Jin Korea Institute of Radiological and Medical Sciences, Seoul, Korea

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