Published June 2005 | Version v1
Journal article

Application of a radiophotoluminescent glass plate dosimeter for small field dosimetry

  • 1. Department of Radiology, Kumamoto University Hospital, Kumamoto, 862-0976 (Japan)
  • 2. Asahi Techno Glass Corporation, Shizuoka 421-0302 (Japan)
  • 3. Department of Radiological Technology, Kumamoto University School of Health Sciences, Kumamoto, 862-0976, (Japan)

Description

We have recently developed a prototypical radiophotoluminescent glass plate dosimeter (GPD) system as a device for small field dosimetry. The purpose of this study is to examine the usefulness of the GPD system for small field dosimetry. The profiles measured with the GPD were evaluated by comparing them to those from Kodak X-Omat V and GAFCROMIC XR type R film dosimeters for 2, 5, 9, and 15 mm circular collimators created by a linear accelerator-based radiosurgery system. The GPD output factors were compared with those of various detectors including an ion chamber, a p-type silicon diode detector, a glass rod dosimeter (GRD), and a diamond detector. The results measured with the GPD were also confirmed by comparing them to those from Monte Carlo simulations. The accuracy of a simulated beam is validated by the excellent agreement between Monte Carlo calculated and measured central axis depth-dose curves for 9- and 15 mm circular collimators using 4- and 10 MV photon beams. The GPD profiles show almost the same full width at half maximum as those of film dosimeters and Monte Carlo simulations at 4- and 10 MV photon beams, but a little narrower penumbrae than the film dosimeters and Monte Carlo simulations. The output factors measured with the GPD are in good agreement with those from a diode detector, a diamond detector, and the GRD with a small active volume and Monte Carlo simulations, except for a very small 2 mm circular collimator. It was found that the GPD is a very useful detector for small field dosimetry

Additional details

Identifiers

Publishing Information

Journal Title
Medical Physics
Journal Volume
32
Journal Issue
6
Journal Page Range
p. 1548-1554
ISSN
0094-2405
CODEN
MPHYA6

Optional Information

Notes
(c) 2005 American Association of Physicists in Medicine