Machine characterization and central axis depth dose data of a superficial x-ray radiotherapy unit

. The purpose of this study is to present data from the clinical commissioning of an Xstrahl 150 x-ray unit used for superficial radiotherapy, . Commissioning tasks included vendor acceptance tests, timer reproducibility, linearity and end-effect measurements, half-value layer (HVL) measurements, in...

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Veröffentlicht in:Biomedical physics & engineering express 2023-01, Vol.9 (1), p.15005
Hauptverfasser: Xiong, Zhenyu, Zhong, Yuncheng, Banks, Thomas I., Reynolds, Robert, Chiu, Tsuicheng, Tan, Jun, Zhang, You, Parsons, David, Yan, Yulong, Godley, Andrew, Stojadinovic, Strahinja
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Sprache:eng
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Zusammenfassung:. The purpose of this study is to present data from the clinical commissioning of an Xstrahl 150 x-ray unit used for superficial radiotherapy, . Commissioning tasks included vendor acceptance tests, timer reproducibility, linearity and end-effect measurements, half-value layer (HVL) measurements, inverse square law verification, head-leakage measurements, and beam output calibration. In addition, percent depth dose (PDD) curves were determined for different combinations of filter/kV settings and applicators. Automated PDD water phantom scans were performed utilizing four contemporary detectors: a microDiamond detector, a microSilicon detector, an EDGE detector, and a PinPoint ionization chamber. The measured PDD data were compared to the published values in BJR Supplement 25, . The x-ray unit's mechanical, safety, and radiation characteristics were within vendor-stated specifications. Across sixty commissioned x-ray beams, the PDDs determined in water using solid state detectors were in excellent agreement with the BJR 25 data. For the lower (
ISSN:2057-1976
2057-1976
DOI:10.1088/2057-1976/aca611