A novel method for the determination of field output factors and output correction factors for small static fields for six diodes and a microdiamond detector in megavoltage photon beams

被引:49
|
作者
Casar, Bozidar [1 ]
Gershkevitsh, Eduard [2 ]
Mendez, Ignasi [1 ]
Jurkovic, Slaven [3 ]
Huq, M. Saiful [4 ,5 ]
机构
[1] Inst Oncol Ljubljana, Dept Dosimetry & Qual Radiol Procedures, Zaloska 2, Ljubljana 1000, Slovenia
[2] North Estonia Med Ctr, Med Phys Serv, J Sutiste Tee 19, EE-13419 Tallinn, Estonia
[3] Univ Hosp Rijeka, Med Phys Dept, Kresimirova 42, Rijeka 51000, Croatia
[4] Univ Pittsburgh, Sch Med, Dept Radiat Oncol, Pittsburgh, PA USA
[5] UPMC, Hillman Canc Ctr, Pittsburgh, PA USA
关键词
W1; scintillator; EBT3; films; diodes; microDiamond; small fields; EXRADIN W1 SCINTILLATOR; GAMMA-KNIFE PERFEXION; MONTE-CARLO; REFERENCE DOSIMETRY; RELATIVE DOSIMETRY; RADIOCHROMIC FILM; SMALL MV; RADIATION; CYBERKNIFE; CALIBRATION;
D O I
10.1002/mp.13318
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
Purpose: The goal of this work is to provide a large and consistent set of data for detector-specific output correction factors, k fclin; fref Qclin; Qref, for small static fields for seven solid-state detectors and to determine field output factors, X fclin; fref Qclin; Qref, using EBT3 radiochromic films and W1 plastic scintillator as reference detectors on two different linear accelerators and four megavoltage photon beams. Consistent measurement conditions and recommendations given in the International Code of Practice TRS-483 for small-field dosimetry were followed throughout the study. Methods: X fclin; fref Qclin; Qref were determined on two linacs, Elekta Versa HD and Varian TrueBeam, for 6 and 10 MV beams with and without flattening filter and for nine fields ranging from 0.5 9 0.5 cm2 to 10 9 10 cm2. Signal readings obtained with EBT3 radiochromic films and W1 plastic scintillator were fitted by an analytical function. Volume averaging correction factors, determined from twodimensional (2D) dose matrices obtained with EBT3 films and fitted to bivariate Gaussian function, were used to correct measured signals. k fclin; fref Qclin; Qref were determined empirically for six diodes, IBA SFD, IBA Razor, PTW 60008 P, PTW 60012 E, PTW 60018 SRS, and SN EDGE, and a PTW 60019 microDiamond detector. Results: Field output factors and detector-specific k fclin; fref Qclin; Qref are presented in the form of analytical functions as well as in the form of discrete values. It is found that in general, for a given linac, smallfield output factors need to be determined for every combination of beam energy and filtration (WFF or FFF) and field size as the differences between them can be statistically significant (P < 0.05). For different beam energies, the present data for k fclin; fref Qclin; Qref are found to differ significantly (P < 0.05) from the corresponding data published in TRS-483 mostly for the smallest fields (< 1.5 cm). For the PTW microDiamond detector, statistically significant differences (P < 0.05) between k fclin; fref Qclin; Qref values were found for all investigated beams on an Elekta Versa HD linac for field sizes 0.5 9 0.5 cm2 and 0.8 9 0.8 cm2. Significant differences in k fclin; fref Qclin; Qref between beams of a given energy but with and without flattening filters are found for measurements made in small fields (< 1.5 cm) at a given linac. Differences in k fclin; fref Qclin; Qref are also found when measurements are made at different linacs using the same beam energy filtration combination; for the PTW microDiamond detector, these differences were found to be around 6% and were considered as significant. Conclusions: Selection of two reference detectors, EBT3 films and W1 plastic scintillator, and use of an analytical function, is a novel approach for the determination of X fclin; fref Qclin; Qref for small static fields in megavoltage photon beams. Large set of k fclin; fref Qclin; Qref data for seven solid-state detectors and four beam energies determined on two linacs by a single group of researchers can be considered a valuable supplement to the literature and the TRS-483 dataset. (c) 2018 The Authors. Medical Physics published by Wiley Periodicals, Inc. on behalf of American Association of Physicists in Medicine. [ https://doi. org/10.1002/mp. 13318]
引用
收藏
页码:944 / 963
页数:20
相关论文
共 50 条
  • [31] Output correction factors for nine small field detectors in 6 MV radiation therapy photon beams: A PENELOPE Monte Carlo study
    Benmakhlouf, Hamza
    Sempau, Josep
    Andreo, Pedro
    [J]. MEDICAL PHYSICS, 2014, 41 (04)
  • [32] Monte Carlo calculated output correction factors for nine small field detectors in Varian Clinac iX 6 MV photon beams
    Benmakhlouf, H.
    Sempau, J.
    Andreo, P.
    [J]. RADIOTHERAPY AND ONCOLOGY, 2014, 111 : S201 - S202
  • [33] Detector comparison for small field output factor measurements in flattening filter free photon beams
    Lechner, Wolfgang
    Palmans, Hugo
    Soelkner, Lukas
    Grochowska, Paulina
    Georg, Dietmar
    [J]. RADIOTHERAPY AND ONCOLOGY, 2013, 109 (03) : 356 - 360
  • [34] Determination of output factor for 6 MV small photon beam: comparison between Monte Carlo simulation technique and microDiamond detector
    Krongkietlearts, K.
    Tangboonduangjit, P.
    Paisangittisakul, N.
    [J]. 13TH SOUTH-EAST ASIAN CONGRESS OF MEDICAL PHYSICS 2015 (SEACOMP), 2016, 694
  • [35] Characterization of Exradin W1 plastic scintillator for output factors measurements in small field photon beams
    Petrucci, A.
    Consorti, R.
    Mangiacotti, F. P.
    Pressello, M. C.
    [J]. RADIOTHERAPY AND ONCOLOGY, 2015, 115 : S744 - S744
  • [36] Output and (kQclin, Qmsrfclin, fmsr) correction factors measured and calculated in very small circular fields for microDiamond and EFD-3G detectors
    Alhakeem, Eyad
    Zavgorodni, Sergei
    [J]. PHYSICS IN MEDICINE AND BIOLOGY, 2018, 63 (15):
  • [37] Monte Carlo calculated correction factors for diodes and ion chambers in small photon fields
    Czarnecki, D.
    Zink, K.
    [J]. PHYSICS IN MEDICINE AND BIOLOGY, 2013, 58 (08): : 2431 - 2444
  • [38] Determination of small field output factors and correction factors using a Monte Carlo method for a 1000 MU/min CyberKnife® system equipped with fixed collimators
    Moignier, C.
    Huet, C.
    Barraux, V.
    Bassinet, C.
    Baumann, M.
    Sebe-Mercier, K.
    Loiseau, C.
    Batalla, A.
    Makovicka, L.
    [J]. RADIATION MEASUREMENTS, 2014, 71 : 287 - 292
  • [39] Small fields output factors measurements and correction factors determination for several detectors for a CyberKnife® and linear accelerators equipped with microMLC and circular cones
    Bassinet, C.
    Huet, C.
    Derreumaux, S.
    Brunet, G.
    Chea, M.
    Baumann, M.
    Lacornerie, T.
    Gaudaire-Josset, S.
    Trompier, F.
    Roch, P.
    Boisserie, G.
    Clairand, I.
    [J]. MEDICAL PHYSICS, 2013, 40 (07)
  • [40] Precision dosimetry for narrow photon beams used in radiosurgery -: Determination of Gamma Knife® output factors
    Mack, A
    Scheib, SG
    Major, J
    Gianolini, S
    Pazmandi, G
    Feist, H
    Czempiel, H
    Kreiner, HJ
    [J]. MEDICAL PHYSICS, 2002, 29 (09) : 2080 - 2089