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May 8, 2026Journal of Applied Clinical Medical Physics0 citationsOpen Access

FilmQADose: Open‐source software for radiochromic film dosimetry

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EHEduardo Herrera-AlbaCCCarlos Contreras‐QuirozJSJuliana Sandoval‐Navia

Key Points

  • The aim is to introduce FilmQADose, a software tool for enhancing two-dimensional dose verification in radiotherapy using radiochromic films.
  • Developed as open-source software in Python
  • Includes functionalities like calibration curve generation, dose reconstruction, and gamma analysis
  • Validated with Gafchromic EBT3 films and compared measured doses against planning system calculations
  • Achieved accurate dose verification with 3%/3 mm gamma criteria for IMRT plans
  • Supported clinical QA for both routine checks and research applications
  • Output images compatible with DICOM RT Dose files

Abstract

PURPOSE: FilmQADose is an open-source, Python-based software for radiochromic film dosimetry, designed to provide medical physicists with a freely available, extensible tool for two-dimensional dose verification in radiotherapy. It covers the full film QA workflow, from calibration curve generation to plan-to-film comparison, targeting clinical and research centers that require an accessible alternative to commercial solutions. DEVELOPMENT AND VALIDATION METHODS: The software was developed in Python using open-source scientific libraries for image processing, curve fitting, DICOM handling, and gamma analysis. Core functionalities include rational and polynomial calibration models, multichannel dose reconstruction, normalized cross-correlation template matching for automatic alignment, and gamma analysis. Validation was performed using irradiated Gafchromic EBT3 films in square field, pyramidal, and breast IMRT plans. Measured dose maps were compared against treatment planning system calculations using 3%/3 mm gamma criteria. DATA FORMAT AND USAGE NOTES: FilmQADose processes TIFF images acquired from flatbed scanners and DICOM RT Dose files exported from treatment planning systems. Output dose maps are generated in DICOM 2D format. The software is implemented in Python with standard scientific Python dependencies and includes a graphical user interface built using PySide6. The source code, documentation, and usage guides are publicly available at: eduardoh27.github.io/FilmQADose. POTENTIAL APPLICATIONS: The software supports clinical quality assurance in IMRT dose verification, as well as for research applications in radiochromic film dosimetry methodology. A limitation is the absence of lateral response artifact correction and recent machine-learning-based calibration methods.

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Cite This Study

Herrera-Alba et al. (2026) studied this question.

synapsesocial.com/papers/69fd7e90bfa21ec5bbf06d32https://doi.org/10.1002/acm2.70602
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