Abstract

The purpose of this work is to evaluate the use of a two-dimensional (2D) planar ion chamber array to characterize leakage radiation from the head of the linear accelerator. Ion chamber arrays provide a benefit over a singular ion chamber measurement as they allow for the measurement of a larger area in order to isolate the point of maximum leakage dose and the small size of each individual ion chamber minimizes volume-averaging effects. A Varian Truebeam® undergoing acceptance testing was used for all measurements. The gantry was wrapped in Portal Pack for Localization (PPL) radiographic film in order to isolate the location of maximum leakage. A calibration curve was developed and used to determine dose-to-film. An Ion Chamber Profiler (IC Profiler™) manufactured by Sun Nuclear Corporation was used to confirm measurements by the PPL film. All measurements were normalized to leakage at 100 cm from the target relative to the central axis. Three points were investigated with the IC Profiler, including the top of the gantry, the Varian logo, and the side of the gantry. For the three locations, respectively, the PPL film and the IC profiler were measured 0.142% and 0.131%, 0.036% and 0.030%, and 0.014% and 0.019%. The good agreement between the PPL film and the IC Profiler provides confidence in the use of a more efficient and accurate ion chamber array for head leakage measurements.

Highlights

  • IntroductionDuring the acceptance of a new linear accelerator, the adequacy of the shielding

  • Ion chamber arrays provide a benefit over a singular ion chamber measurement as they allow for the measurement of a larger area in order to isolate the point of maximum leakage dose and the small size of each individual ion chamber minimizes volume-averaging effects

  • All leakage measurements were taken during the acceptance and commissioning of the linear accelerator using a step method, which included determining the point along the linear accelerator head of maximum leakage using film and confirming the measured dose with an ionization chamber array

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Summary

Introduction

During the acceptance of a new linear accelerator, the adequacy of the shielding. According to the National Council on Radiation Protection (NCRP) report 49, the recommended magnitude of leakage radiation, defined at 1 meter from the source, should not exceed 0.1% of the exposure along the primary axis at the 1 meter from the source for a megavoltage linear accelerator [1]. A more recent report from the NCRP defines leakage radiation as radiation measured outside of the maximum field size produced. The leakage radiation limit is 0.2% of the absorbed dose rate on the central axis and at the same treatment depth [2]

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