Abstract
Objective: To adapt and validate an anthropomorphic head phantom for use in a cranial radiosurgery audit. Methods: Two bespoke inserts were produced for the phantom: one for providing the target and organ at risk for delineation and the other for performing dose measurements. The inserts were tested to assess their positional accuracy. A basic treatment plan dose verification with an ionization chamber was performed to establish a baseline accuracy for the phantom and beam model. The phantom and inserts were then used to perform dose verification measurements of a radiosurgery plan. The dose was measured with alanine pellets, EBT extended dose film and a plastic scintillation detector (PSD). Results: Both inserts showed reproducible positioning (60.5mm) and good positional agreement between them (60.6mm). The basic treatment plan measurements showed agreement to the treatment planning system (TPS) within 0.5%. Repeated film measurements showed consistent gamma passing rates with good agreement to the TPS. For 2%-2mm global gamma, the mean passing rate was 96.7% and the variation in passing rates did not exceed 2.1%. The alanine pellets and PSD showed good agreement with the TPS (20.1% and 0.3% dose difference in the target) and good agreement with each other (within 1%). Conclusion: The adaptations to the phantom showed acceptable accuracies. The presence of alanine and PSD do not affect film measurements significantly, enabling simultaneous measurements by all three detectors. Advances in knowledge: A novel method for thorough end-to-end test of radiosurgery, with capability to incorporate all steps of the clinical pathway in a timeefficient and reproducible manner, suitable for a national audit.
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CITATION STYLE
Dimitriadis, A., Palmer, A. L., Thomas, R. A. S., Nisbet, A., & Clark, C. H. (2017). Adaptation and validation of a commercial head phantom for cranial radiosurgery dosimetry end-to-end audit. British Journal of Radiology, 90(1074). https://doi.org/10.1259/bjr.20170053
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