Small field electron beam dosimetry using MOSFET detector

被引:18
|
作者
Amin, Md Nurul [1 ]
Heaton, Robert [1 ,2 ]
Norrlinger, Bern [1 ]
Islam, Mohammad K. [1 ,2 ]
机构
[1] Princess Margaret Hosp, Univ Hlth Network, Dept Radiat Phys, Toronto, ON M5G 2M9, Canada
[2] Univ Toronto, Dept Radiat Oncol, Toronto, ON, Canada
来源
关键词
MOSFET; small field dosimetry; electron beams; TOTAL-BODY IRRADIATION; GAFCHROMIC EBT FILM; IN-VIVO DOSIMETRY; SENSITIVITY; DEPENDENCE; ENERGY; IMRT; KV;
D O I
10.1120/jacmp.v12i1.3267
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
The dosimetry of very small electron fields can be challenging due to relative shifts in percent depth-dose curves, including the location of d(max), and lack of lateral electronic equilibrium in an ion chamber when placed in the beam. Conventionally a small parallel plate chamber or film is utilized to perform small field electron beam dosimetry. Since modern radiotherapy departments are becoming filmless in favor of electronic imaging, an alternate and readily available clinical dosimeter needs to be explored. We have studied the performance of MOSFET as a relative dosimeter in small field electron beams. The reproducibility, linearity and sensitivity of a high-sensitivity microMOSFET were investigated for clinical electron beams. In addition, the percent depth doses, output factors and profiles have been measured in a water tank with MOSFET and compared with those measured by an ion chamber for a range of field sizes from 1 cm diameter to 10 cm x 10 cm for 6, 12, 16 and 20 MeV beams. Similar comparative measurements were also performed with MOSFET and films in solid water phantom. The MOSFET sensitivity was found to be practically constant over the range of field sizes investigated. The dose response was found to be linear and reproducible ( within +/- 1% for 100 cGy). An excellent agreement was observed among the central axis depth dose curves measured using MOSFET, film and ion chamber. The output factors measured with MOSFET for small fields agreed to within 3% with those measured by film dosimetry. Overall results indicate that MOSFET can be utilized to perform dosimetry for small field electron beam.
引用
收藏
页码:50 / 57
页数:8
相关论文
共 50 条
  • [41] Electron beam Dosimetry using a computed radiography system
    Olch, A.
    MEDICAL PHYSICS, 2006, 33 (06) : 2097 - 2097
  • [42] Hydroxyapatite for Electron Beam Dosimetry Using the EPR Method
    Hajiloo, N.
    Ziaie, F.
    MOSCOW UNIVERSITY PHYSICS BULLETIN, 2023, 78 (03) : 339 - 346
  • [43] Electron beam dosimetry using an A-SI epid
    Chatelain, C.
    Vetterli, D.
    Fix, M. K.
    Manser, P.
    STRAHLENTHERAPIE UND ONKOLOGIE, 2015, 191 (01) : 87 - 87
  • [44] Hydroxyapatite for Electron Beam Dosimetry Using the EPR Method
    N. Hajiloo
    F. Ziaie
    Moscow University Physics Bulletin, 2023, 78 : 339 - 346
  • [45] Development of a Fan-Beam Optical Scanner Using CMOS Array for Small Field Dosimetry
    Brost, E.
    Senthilkumar, S.
    Warmington, L.
    Watanabe, Y.
    MEDICAL PHYSICS, 2016, 43 (06) : 3563 - 3563
  • [46] Characterization of a new MOSFET detector configuration for in vivo skin dosimetry
    Scalchi, P
    Francescon, P
    Rajaguru, P
    MEDICAL PHYSICS, 2005, 32 (06) : 1571 - 1578
  • [47] Clinical dosimetry with MOSFET dosimeters to determine the dose along the field junction in a split beam technique
    Bloemen-van Gurp, E
    du Bois, W
    Visser, P
    Bruinvis, I
    Jalink, D
    Hermans, J
    Lambin, P
    RADIOTHERAPY AND ONCOLOGY, 2003, 67 (03) : 351 - 357
  • [48] Monte Carlo study on electron contamination and output factors of small field dosimetry in 6 MV photon beam
    Yani, Sitti
    Dirgayussa, I. Gde Eka
    Rhani, Mohamad Fahdillah
    Soh, Roger C. X.
    Haryanto, Freddy
    Arif, Idam
    SMART SCIENCE, 2016, 4 (02): : 87 - 94
  • [49] CyberKnife multi-site small beam dosimetry with a new plastic scintillator detector
    Russo, S.
    Masi, L.
    Bergantin, A.
    De Martin, E.
    Doro, R.
    Frassanito, C.
    Fumagalli, M. L.
    Martinotti, A. S.
    Rondi, E.
    Vigorito, S.
    Mancosu, P.
    RADIOTHERAPY AND ONCOLOGY, 2016, 119 : S733 - S733
  • [50] Intercalibration of a polycrystalline 3D diamond detector for small field dosimetry
    Kanxheri, K.
    Aisa, D.
    Solestizi, L. Alunni
    Bellini, M.
    Caprai, M.
    Corsi, C.
    Dipilato, A. C.
    Iacco, M.
    Ionica, M.
    Lagomarsino, S.
    Morozzi, A.
    Moscatelli, F.
    Passeri, D.
    Sciortino, S.
    Talamonti, C.
    Zucchetti, C.
    Servoli, L.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2020, 958