Dosimetric commissioning and quality assurance of scanned ion beams at the Italian National Center for Oncological Hadrontherapy
Alfredo Mirandola (1), S. Molinelli (1), G. Vilches Freixas (1), M., Donetti (1,2), A. Mairani (1), E. Gallio (1), D. Panizza (1), S. Russo (1),, G. Magro (1,3), S. Giordanengo (2), M. Ciocca (1) R. Orecchia (1,4)

TL;DR
This paper details the comprehensive dosimetric commissioning and ongoing quality assurance procedures for scanned proton and carbon ion beams at Italy's national hadrontherapy center, demonstrating stable beam performance over two years.
Contribution
It introduces a detailed methodology for commissioning and QA of scanned ion beams, including novel calibration and measurement techniques validated over 24 months.
Findings
Excellent agreement between simulated and measured depth-dose distributions.
Beam parameters remained stable with minimal deviations during routine QA.
Machine downtime was limited, indicating reliable operation.
Abstract
Purpose: To describe the dosimetric commissioning and quality assurance (QA) of the actively scanned proton and carbon ion beams at the Italian National Center for Oncological Hadrontherapy. Methods: The laterally integrated depth-dose-distributions (IDDs) were acquired with the PTW Peakfinder, a variable depth water column, equipped with two Bragg peak ionization chambers. FLUKA MC code was used to generate the energy libraries, the IDDs in water, and the fragment spectra for carbon beams. EBT3 films were used for spot size measurements, beam position over the scan field, and homogeneity in 2D-fields. Beam monitor calibration was performed in terms of number of particles per MU using both a Farmer-type and an Advanced Markus ionization chamber. The beam position at the isocenter, beam monitor calibration curve, dose constancy in the center of the spread-out-Bragg-peak, dose homogeneity…
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