In-line MRI-LINAC depth dose measurements using an in-house plastic scintillation dosimeter
Autor: | Anatoly B. Rosenfeld, Urszula Jelen, Levi Madden, Bin Dong, Natalia Roberts, Enbang Li, Lois Holloway, Peter E Metcalfe |
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Rok vydání: | 2021 |
Předmět: |
Scintillation
Dosimeter Materials science Mri linac Radiation Dosimeters business.industry 0206 medical engineering Detector Australia 02 engineering and technology Magnetic Resonance Imaging 020601 biomedical engineering 030218 nuclear medicine & medical imaging 03 medical and health sciences 0302 clinical medicine Optics Scintillation Counting Dosimetry business Plastics General Nursing Depth dose Percentage depth dose Line (formation) |
Zdroj: | Biomedical Physics & Engineering Express. 7:025012 |
ISSN: | 2057-1976 |
DOI: | 10.1088/2057-1976/abe295 |
Popis: | Plastic scintillation dosimeters (PSDs) have many properties that make them desirable for relative dosimetry with MRI-LINACs. An in-house PSD, Farmer ionisation chamber and Gafchromic EBT3 film were used to measure central axis percentage depth dose distributions (PDDs) at the Australian MRI-LINAC Mean errors were calculated between each detector’s responses, where the in-house PSD was on average within 0.7% of the Farmer chamber and 1.4% of film, while the Farmer chamber and film were on average within 1.1% of each other. However, the PSD systematically over-estimated the dose as depth increased, approaching a maximum overestimation of the order of 3.5% for the smallest field size measured. This trend was statistically insignificant for all other field sizes measured; further investigation is required to determine the source of this effect. The calculated values of mean absolute error are comparable to the those of trusted dosimeters reported in the literature. These mean absolute errors, and the ubiquity of desirable dosimetric qualities inherent to PSDs suggest that PSDs in general are accurate for relative dosimetry with the MRI-LINAC. Further investigation is required into the source of the reported systematic trends dependent on field-size and depth of measurement. |
Databáze: | OpenAIRE |
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