Literature DB >> 24989398

Detector to detector corrections: a comprehensive experimental study of detector specific correction factors for beam output measurements for small radiotherapy beams.

Godfrey Azangwe1, Paulina Grochowska1, Dietmar Georg2, Joanna Izewska1, Johannes Hopfgartner2, Wolfgang Lechner2, Claus E Andersen3, Anders R Beierholm3, Jakob Helt-Hansen3, Hideyuki Mizuno4, Akifumi Fukumura4, Kaori Yajima5, Clare Gouldstone6, Peter Sharpe6, Ahmed Meghzifene1, Hugo Palmans7.   

Abstract

PURPOSE: The aim of the present study is to provide a comprehensive set of detector specific correction factors for beam output measurements for small beams, for a wide range of real time and passive detectors. The detector specific correction factors determined in this study may be potentially useful as a reference data set for small beam dosimetry measurements.
METHODS: Dose response of passive and real time detectors was investigated for small field sizes shaped with a micromultileaf collimator ranging from 0.6 × 0.6 cm(2) to 4.2 × 4.2 cm(2) and the measurements were extended to larger fields of up to 10 × 10 cm(2). Measurements were performed at 5 cm depth, in a 6 MV photon beam. Detectors used included alanine, thermoluminescent dosimeters (TLDs), stereotactic diode, electron diode, photon diode, radiophotoluminescent dosimeters (RPLDs), radioluminescence detector based on carbon-doped aluminium oxide (Al2O3:C), organic plastic scintillators, diamond detectors, liquid filled ion chamber, and a range of small volume air filled ionization chambers (volumes ranging from 0.002 cm(3) to 0.3 cm(3)). All detector measurements were corrected for volume averaging effect and compared with dose ratios determined from alanine to derive a detector correction factors that account for beam perturbation related to nonwater equivalence of the detector materials.
RESULTS: For the detectors used in this study, volume averaging corrections ranged from unity for the smallest detectors such as the diodes, 1.148 for the 0.14 cm(3) air filled ionization chamber and were as high as 1.924 for the 0.3 cm(3) ionization chamber. After applying volume averaging corrections, the detector readings were consistent among themselves and with alanine measurements for several small detectors but they differed for larger detectors, in particular for some small ionization chambers with volumes larger than 0.1 cm(3).
CONCLUSIONS: The results demonstrate how important it is for the appropriate corrections to be applied to give consistent and accurate measurements for a range of detectors in small beam geometry. The results further demonstrate that depending on the choice of detectors, there is a potential for large errors when effects such as volume averaging, perturbation and differences in material properties of detectors are not taken into account. As the commissioning of small fields for clinical treatment has to rely on accurate dose measurements, the authors recommend the use of detectors that require relatively little correction, such as unshielded diodes, diamond detectors or microchambers, and solid state detectors such as alanine, TLD, Al2O3:C, or scintillators.

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Year:  2014        PMID: 24989398     DOI: 10.1118/1.4883795

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  19 in total

1.  Investigating the Electronic Portal Imaging Device for Small Radiation Field Measurements.

Authors:  Arpita Agarwal; Nikhil Rastogi; K J Maria Das; S A Yoganathan; D Udayakumar; Shaleen Kumar
Journal:  J Med Phys       Date:  2017 Apr-Jun

2.  Deriving detector-specific correction factors for rectangular small fields using a scintillator detector.

Authors:  Yujiao Qin; Hualiang Zhong; Ning Wen; Karen Snyder; Yimei Huang; Indrin J Chetty
Journal:  J Appl Clin Med Phys       Date:  2016-11-08       Impact factor: 2.102

3.  Dosimetric characterization of Elekta stereotactic cones.

Authors:  Egor Borzov; Alexander Nevelsky; Raquel Bar-Deroma; Itzhak Orion
Journal:  J Appl Clin Med Phys       Date:  2017-12-20       Impact factor: 2.102

4.  Survey of 5 mm small-field output factor measurements in Australia.

Authors:  Christopher P Oliver; Duncan J Butler; Viliami Takau; Ivan Williams
Journal:  J Appl Clin Med Phys       Date:  2018-01-25       Impact factor: 2.102

5.  AAPM-RSS Medical Physics Practice Guideline 9.a. for SRS-SBRT.

Authors:  Per H Halvorsen; Eileen Cirino; Indra J Das; Jeffrey A Garrett; Jun Yang; Fang-Fang Yin; Lynne A Fairobent
Journal:  J Appl Clin Med Phys       Date:  2017-08-08       Impact factor: 2.102

6.  Assessment of Imprecise Small Photon Beam Modeling by Two Treatment Planning System Algorithms.

Authors:  Hadi Keivan; Daryoush Shahbazi-Gahrouei; Ahmad Shanei; Alireza Amouheidari
Journal:  J Med Signals Sens       Date:  2018 Jan-Mar

7.  Small field detector correction factors: effects of the flattening filter for Elekta and Varian linear accelerators.

Authors:  Madelaine K Tyler; Paul Z Y Liu; Christopher Lee; David R McKenzie; Natalka Suchowerska
Journal:  J Appl Clin Med Phys       Date:  2016-05-08       Impact factor: 2.102

8.  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.

Authors:  Božidar Casar; Eduard Gershkevitsh; Ignasi Mendez; Slaven Jurković; M Saiful Huq
Journal:  Med Phys       Date:  2018-12-24       Impact factor: 4.071

9.  Testing the methodology for dosimetry audit of heterogeneity corrections and small MLC-shaped fields: Results of IAEA multi-center studies.

Authors:  Joanna Izewska; Paulina Wesolowska; Godfrey Azangwe; David S Followill; David I Thwaites; Mehenna Arib; Amalia Stefanic; Claudio Viegas; Luo Suming; Daniela Ekendahl; Wojciech Bulski; Dietmar Georg
Journal:  Acta Oncol       Date:  2016-03-03       Impact factor: 4.089

10.  CyberKnife® fixed cone and Iris™ defined small radiation fields: Assessment with a high-resolution solid-state detector array.

Authors:  Giordano Biasi; Marco Petasecca; Susanna Guatelli; Ebert A Martin; Garry Grogan; Benjamin Hug; Jonathan Lane; Vladimir Perevertaylo; Tomas Kron; Anatoly B Rosenfeld
Journal:  J Appl Clin Med Phys       Date:  2018-07-12       Impact factor: 2.102

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