Update of the CLRP Monte Carlo TG-43 parameter database for high-energy brachytherapy sources
Habib Safigholi, Marc J. P. Chamberland, Randle E. P. Taylor, Martin, P. Martinov, D. W. O. Rogers, and Rowan M. Thomson

TL;DR
This paper updates the CLRP TG-43 dosimetry database for high-energy brachytherapy sources using Monte Carlo simulations, providing detailed parameters and source models for improved dosimetry and treatment planning.
Contribution
It introduces an extended, validated TG-43 parameter database for 33 high-energy brachytherapy sources, with comprehensive source descriptions and dose data, distributed with egs_brachy.
Findings
Enhanced accuracy of dose calculations for high-energy sources.
Validated data against previous versions and published data.
Accessible database for research and clinical applications.
Abstract
PURPOSE: To update and extend version 2 of the Carleton Laboratory for Radiotherapy Physics (CLRP) TG-43 dosimetry database (CLRP_TG43v2) for 33 high-energy (HE, ~keV) brachytherapy sources using egs_brachy, an open-source EGSnrc application. A comprehensive dataset of TG-43 parameters is compiled, including detailed source descriptions, dose-rate constants, radial dose functions, 1D and 2D anisotropy functions, along-away dose-rate tables, Primary and Scatter Separated (PSS) dose tables, and mean photon energies escaping each source. The database also documents the source models which will be freely distributed with egs_brachy. ACQUISITION AND VALIDATION METHODS: Datasets are calculated after a recoding of the source geometries using the egs++ geometry package and its egs_brachy extensions. Air kerma per history is calculated in a 10x10x0.05 cm3 voxel located 100 cm from the…
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Taxonomy
TopicsAdvanced Radiotherapy Techniques · Radiation Therapy and Dosimetry · Radiation Dose and Imaging
