Simulation of surface flux received through breast tumor radiation therapy with MCNPX code
Subject Areas : Photon Therapy, Diagnosis and EquipmentParsa Afshin 1 , Sharifeh Shahi 2 , Farhad Azimi Far 3
1 - Department of Biomedical Engineering, Islamic Azad University of Isfahan (Khorasgan) branch, Isfahan, Iran.
2 - Laser and Biophotonics in Biotechnologies Research Center, Islamic Azad University of Isfahan (Khorasgan) branch, Isfahan, Iran.
3 - Department of Biomedical Engineering, Islamic Azad University of Isfahan (Khorasgan) branch, Isfahan, Iran.
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[1] R. Khabaz, “Phantom dosimetry and cancer risks estimation undergoing 6 MV photon beam by an Elekta SL-25 linac,” Appl. Radiat. Isot. vol. 163, pp. 109232, 2020.
[2] Z. Xu, X. Chen, Z. Sun, C. Li, and B. Jiang, “Recent progress on mitochondrial targeted cancer therapy based on inorganic nanomaterials,” Mater. Today Chem. vol. 12, pp. 240–260, 2019.
[3] S. Siddique and J. C. L. Chow, “Artificial intelligence in radiotherapy,” Reports Pract. Oncol. Radiother. vol. 25, no. 4, pp. 656–666, 2020.
[4] J. C. L. Chow, “Artificial intelligence in radiotherapy and patient care,” in Artificial Intelligence in Medicine, Springer, vol. 95, pp. 1–13, 2021.
[5] J. F. Briesmeister, “MCNPTM-A general Monte Carlo N-particle transport code,” Version 4C, LA-13709-M, Los Alamos Natl. Lab. 2000.
[6] I. G Evseev, H. R Schelin, S. A Paschuk, E. Milhoretto, J. A P Setti, O. Yevseyeva, J. T de Assis, J. M Hormaza, K. S Díaz, and R. T Lopes, “Comparison of SRIM, MCNPX and GEANT simulations with experimental data for thick Al absorbers,” Appl. Radiat. Isot. vol. 68, no. 4–5, pp. 948–950, 2010.
[7] M. Mirzaie, A. A. Mowlavi, S. Mohammadi, and H. Mirshekarpour, “Absorbed dose calculation from beta and gamma rays of 131I in ellipsoidal thyroid and other organs of neck with MCNPX code,” ISMJ, vol. 15, pp. 201–208, 2012.
[8] N. Azadegan, M. Hassanpour, M. U. Khandaker, M. R. I. Faruque, K. S. Al-mugren, and D. A. Bradley, “Calculation of secondary radiation absorbed doses due to the proton therapy on breast cancer using MCNPX code,” Radiat. Phys. Chem. vol. 183, pp. 109427, 2021.
[9] X. G. Xu and K. F. Eckerman, Handbook of anatomical models for radiation dosimetry, CRC Press, 2009.
[10] U. Javaid, K. Souris, S. Huang, and J. A. Lee, “Denoising proton therapy Monte Carlo dose distributions in multiple tumor sites: A comparative neural networks architecture study,” Phys. Medica, vol. 89, pp. 93–103, 2021.
[11] N. Reynaert, S.C. van der Marck, D.R. Schaart, W. Van der Zee, C. Van Vliet-Vroegindeweij, M. Tomsej, J. Jansen, B. Heijmen, M. Coghe, and C. De Wagter, “Monte Carlo treatment planning for photon and electron beams,” Radiat. Phys. Chem. vol. 76, pp. 643–686, 2007.
[12] D. Sarrut, M. Bardiès, N. Boussion, N. Freud, S. Jan, Jean Michel Létang, G. Loudos, L. Maigne, S. Marcatili, T. Mauxion, P. Papadimitroulas, Y. Perrot, U. Pietrzyk, C. Robert Robert, D. R. Schaart, D. Visvikis, and I. Buvat , “A review of the use and potential of the GATE Monte Carlo simulation code for radiation therapy and dosimetry applications,” Med. Phys. vol. 41, pp. 64301(1-14), 2014.