TL;DR
This study validates the MC-GPU Monte Carlo code for breast dosimetry across various imaging modalities, demonstrating its accuracy and efficiency, and introduces a validated phase space file implementation compatible with standard formats.
Contribution
The paper introduces a validated phase space file generation routine for MC-GPU and demonstrates its compatibility with standard Monte Carlo codes for breast dosimetry.
Findings
MC-GPU shows good agreement with other codes in dose calculations
Photon spectra entering a voxel are consistent across codes
MC-GPU is suitable for high-performance breast dosimetry simulations
Abstract
Purpose: To validate the MC-GPU Monte Carlo code for dosimetric studies in x-ray breast imaging modalities: mammography, digital breast tomosynthesis, contrast enhanced digital mammography and breast-CT. Moreover, to implement and validate a phase space file generation routine. Methods: The MC-GPU code (v. 1.5 DBT) was modified in order to generate phase space files and to be compatible with PENELOPE v. 2018 derived cross section database. Simulations were performed with homogeneous and anthropomorphic breast phantoms for different breast imaging techniques. The glandular dose was computed for each case and compared with results from the PENELOPE (v. 2014) + penEasy (v. 2015) and egs brachy (EGSnrc) Monte Carlo codes. Afterwards, several phase space files were generated with MC-GPU and the scored photon spectra were compared between the codes. Results: MC-GPU showed good agreement with…
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