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An investigation into the INTRABEAM miniature X-ray source dosimetry using ionization chamber and radiochromic film measurements.

Medical Physics 2018 June 24
PURPOSE: Intraoperative radiotherapy using The INTRABEAM System (Carl Zeiss Meditec AG, Jena, Germany), a miniature low-energy X-ray source, has proven to be an effective modality in the treatment of breast cancer. However, some uncertainties remain in its dosimetry. In this work, we investigated the INTRABEAM system dosimetry by performing ionization chamber and radiochromic film measurements of absorbed dose in a water phantom.

METHODS: Ionization chamber measurements were performed with a PTW 34013 parallel-plate soft X-ray chamber at source to detector distances of 5 mm to 30 mm in a water phantom. The absorbed dose to water was calculated using i) the dose formula consistent with the TARGIT breast protocol (TARGIT), ii) the formula recommended by the manufacturer (Zeiss), and iii) the recently proposed CQ formalism of Watson et al. [1]. EBT3 Gafchromic film measurements were made at the same depths in water. To account for the energy dependence of EBT3 film, multiple dose response calibration curves were employed across a range of photon beam qualities relevant to the INTRABEAM spectrum in water.

RESULTS: At all depths investigated, the TARGIT dose was significantly lower than that measured by the Zeiss and CQ methods, as well as film. These dose differences ranged from 14% to as large as 80%. In general, the doses measured by film, and the Zeiss and CQ methods were in good agreement to within measurement uncertainties (5-6%).

CONCLUSIONS: These results suggest that the TARGIT dose underestimates the physical dose to water from the INTRABEAM source. Understanding the correlation between the TARGIT and physical dose is important for any studies wishing to make dosimetric comparisons between the INTRABEAM and other radiation emitting devices. This article is protected by copyright. All rights reserved.

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