Protocol for the measurement of the absorbed dose rate to water for a planar (32)P beta emitting brachytherapy source: A multi-institutional validation Journal Article


Authors: Mulet, L.; Barreto, I.; Cohen, G. N.; Damato, A. L.; Mauceri, T.; Pursley, J.; Deufel, C. L.
Article Title: Protocol for the measurement of the absorbed dose rate to water for a planar (32)P beta emitting brachytherapy source: A multi-institutional validation
Abstract: Purpose: This is a multi-institutional report on inter-observer and inter-instrument variation in the calibration of the absorbed dose rate for a planar 32P beta emitting brachytherapy source. Measurement accuracy is essential since the dose profile is steep and the source is used for the treatment of tumors that are located in close proximity to healthy nervous system structures. Methods and Materials: An RIC-100 32P source was calibrated by three institutions using their own equipment and following their standard procedures. The first institution calibrated the source with an electron diode and EBT3 film. The second institution used an electron diode. The third institution used HD810 film. Additionally, each institution was asked to calibrate the source using an electron diode and procedure that was shared among all institutions and shipped along with the radiation source. The dose rate was reported in units of cGy*min−1 at a water equivalent depth of 1 mm. Results: Close agreement was observed in the measurements from different users and equipment. The variation across all diode detectors and institutions had a standard deviation of 1.8% and maximum difference of 4.6%. The observed variation among two different diode systems used within the same institution had a mean difference of 1.6% and a maximum variation of 1.8%. The variations among film and diode systems used within the same institution had a mean difference of 2.9% and a maximum variation of 4.3% Conclusions: The absorbed dose rate measurement protocol of the planar beta-emitting 32P source permits consistent dosimetry across three institutions and five different electron diode and radiochromic film systems. The methodologies presented herein should enable measurement consistency among other clinical users, which will help ensure high quality patient treatments and outcomes analysis. © 2021 American Brachytherapy Society
Keywords: calibration; brachytherapy; planar; multi-institutional; 32p; absorbed dose rate; beta-emitting
Journal Title: Brachytherapy
Volume: 21
Issue: 1
ISSN: 1538-4721
Publisher: Elsevier Science, Inc.  
Date Published: 2022-01-01
Start Page: 120
End Page: 127
Language: English
DOI: 10.1016/j.brachy.2021.08.001
PUBMED: 34706854
PROVIDER: scopus
PMCID: PMC8810704
DOI/URL:
Notes: Article -- Export Date: 1 March 2022 -- Source: Scopus
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  1. Gilad N Cohen
    180 Cohen
  2. Antonio Leonardo Damato
    75 Damato