Literature DB >> 22894389

EchoSeed Model 6733 Iodine-125 brachytherapy source: improved dosimetric characterization using the MCNP5 Monte Carlo code.

M A Mosleh-Shirazi1, K Hadad, R Faghihi, M Baradaran-Ghahfarokhi, Z Naghshnezhad, A S Meigooni.   

Abstract

This study primarily aimed to obtain the dosimetric characteristics of the Model 6733 (125)I seed (EchoSeed) with improved precision and accuracy using a more up-to-date Monte-Carlo code and data (MCNP5) compared to previously published results, including an uncertainty analysis. Its secondary aim was to compare the results obtained using the MCNP5, MCNP4c2, and PTRAN codes for simulation of this low-energy photon-emitting source. The EchoSeed geometry and chemical compositions together with a published (125)I spectrum were used to perform dosimetric characterization of this source as per the updated AAPM TG-43 protocol. These simulations were performed in liquid water material in order to obtain the clinically applicable dosimetric parameters for this source model. Dose rate constants in liquid water, derived from MCNP4c2 and MCNP5 simulations, were found to be 0.993 cGyh(-1) U(-1) (±1.73%) and 0.965 cGyh(-1) U(-1) (±1.68%), respectively. Overall, the MCNP5 derived radial dose and 2D anisotropy functions results were generally closer to the measured data (within ±4%) than MCNP4c and the published data for PTRAN code (Version 7.43), while the opposite was seen for dose rate constant. The generally improved MCNP5 Monte Carlo simulation may be attributed to a more recent and accurate cross-section library. However, some of the data points in the results obtained from the above-mentioned Monte Carlo codes showed no statistically significant differences. Derived dosimetric characteristics in liquid water are provided for clinical applications of this source model.

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Year:  2012        PMID: 22894389     DOI: 10.1118/1.4736418

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  3 in total

1.  Fast and accurate Monte Carlo modeling of a kilovoltage X-ray therapy unit using a photon-source approximation for treatment planning in complex media.

Authors:  B Zeinali-Rafsanjani; M A Mosleh-Shirazi; R Faghihi; S Karbasi; A Mosalaei
Journal:  J Med Phys       Date:  2015 Apr-Jun

2.  Comparison of TG-43 dosimetric parameters of brachytherapy sources obtained by three different versions of MCNP codes.

Authors:  Neda Zaker; Mehdi Zehtabian; Sedigheh Sina; Craig Koontz; Ali S Meigooni
Journal:  J Appl Clin Med Phys       Date:  2016-03-08       Impact factor: 2.102

3.  Sensitivity analysis of Monte Carlo model of a gantry-mounted passively scattered proton system.

Authors:  Milad Baradaran-Ghahfarokhi; Francisco Reynoso; Michael T Prusator; Baozhou Sun; Tianyu Zhao
Journal:  J Appl Clin Med Phys       Date:  2020-01-03       Impact factor: 2.102

  3 in total

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