会议论文详细信息
Micro-Mini & Nano-Dosimetry & Innovative Technologies in Radiation Therapy
The angular dependence of a two dimensional monolithic detector array for dosimetry in small radiation fields
Stansook, N.^1 ; Petasecca, M.^1,2 ; Utitsarn, K.^1 ; Newall, M.^1 ; Metcalfe, P.^1,2 ; Carolan, M.^2,3 ; Lerch, M.^1,2 ; Rosenfeld, A.B.^1,2
Centre for Medical Radiation Physics, University of Wollongong, NSW
2500, Australia^1
Illawara Heath Medical Research Institute, Wollongong
NSW
2522, Australia^2
Illawarra Cancer Care Center, Wollongong
NSW
2500, Australia^3
关键词: Angular correction;    Angular dependence;    Cylindrical phantoms;    Directional dependence;    Geometric orientation;    Monolithic detectors;    Photon irradiation;    Radiochromic film;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/777/1/012020/pdf
DOI  :  10.1088/1742-6596/777/1/012020
来源: IOP
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【 摘 要 】

The purpose of this study is to investigate the directional dependence of a two dimensional monolithic detector array (M512) under 6 MV photon irradiation and to evaluate the effect of field size on angular dependence. Square fields of sizes: 3x3 cm2and 10x10 cm2were measured at the iso-centre of a cylindrical phantom. Beam angles with incidences from 00- 1800in increments of 150were used to investigate the central pixel angular response of M512, normalized to the pixel response for normal (0°) beam incidence. The angular response of the detector was compared to the response of EBT3 radiochromic film in the identical geometric orientation. The maximum angular dependence was observed at the angle 90°±15° to be -18.62% and -17.70% for the field sizes 3x3 cm2and 10x10 cm2, respectively. The angular dependence of M512 showed no significant difference between field sizes of 3x3 cm2and 10x10 cm2(p>0.05). The maximum dose difference measured by the central pixel of M512 and EBT3 for all angles are -20% for 3x3 cm2field size and -18.58% for the 10x10 cm2field. The diode array's size and packaging effects the angular response of the detector. The angular correction factor is necessary to apply to increase accuracy in dosimetry for arc treatment delivery.

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