DocumentCode
1518778
Title
A miniature “scintillator-fiberoptic-PMT” detector system for the dosimetry of small fields in stereotactic radiosurgery
Author
Beddar, A.S. ; Kinsella, T.J. ; Ikhlef, A. ; Sibata, C.H.
Author_Institution
Dept. of Radiat. Oncology, Case Western Reserve Univ., Cleveland, OH, USA
Volume
48
Issue
3
fYear
2001
fDate
6/1/2001 12:00:00 AM
Firstpage
924
Lastpage
928
Abstract
Linear accelerator-based stereotactic radiosurgery is an important modality in the management of localized intracranial abnormalities and often is the only option for treatment of certain lesions. The quantification of the absorbed radiation doses delivered for this modality has been a challenge due to the small size of the treatment fields (typically 5-30 mm collimated fields) and the type of detectors presently available. This paper presents comparative dose measurements performed using a miniature (1.6×10-3 cm3) plastic scintillator detector to the commonly used detectors for the dosimetry of small photon fields used for stereotactic radiosurgery. The spatial resolution of the plastic scintillator detector was compared to that of a p-type Si diode and a 0.1-cm3 ionization chamber. Small field dosimetry parameters (beam profiles, percent depth doses, and dose output factors) using the scintillation detector, the 0.1-cm 3 ionization chamber, the p-type Si diode, and radiographic film are presented. This comparative study shows that designing a miniature scintillator detector system is feasible and when compared to other benchmark detectors is an appropriate detector for the dosimetry of small stereotactic radiosurgery photon fields
Keywords
X-ray detection; biomedical equipment; dosimetry; radiation therapy; solid scintillation detectors; 5 to 30 mm; comparative dose measurements; lesions; linear accelerator-based stereotactic radiosurgery; localized intracranial abnormalities; miniature plastic scintillator detector; miniature scintillator-fiberoptic-PMT detector; radiation doses; small field dosimetry parameters; small photon fields; spatial resolution; treatment fields; Acceleration; Collimators; Diodes; Dosimetry; Ionization chambers; Lesions; Plastics; Radiation detectors; Radio spectrum management; Solid scintillation detectors;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/23.940133
Filename
940133
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