

Author: Vejdani-Noghreiyan A. Ebrahimi-Khankook A. Rahmani E. Sakhaee M.
Publisher: Edp Sciences
E-ISSN: 1769-700x|51|3|179-186
ISSN: 0033-8451
Source: Radioprotection, Vol.51, Iss.3, 2016-09, pp. : 179-186
Disclaimer: Any content in publications that violate the sovereignty, the constitution or regulations of the PRC is not accepted or approved by CNPIEC.
Abstract
One of the most frequent types of intraocular melanoma in adults is choroidal uveal melanoma. The most commonly used forms of radiation therapy are ophthalmic plaque brachytherapy and charged particle external radiation therapy. In the absence of adequate facilities for brachytherapy and proton therapy, electron therapy would be an efficient radiation therapy technique for treating eye melanomas. In the present work, the Monte Carlo code MCNPX 2.6.0 was used to calculate the dose distribution to substructures of the eye in electron therapy of three common choroidal tumors. The simulations were performed for 6 electron beams with nominal energies between 5 MeV and 10 MeV and also for 10 incidence angles. To identify suitable treatment plans, the tumor-to-sensitive zone dose ratios were estimated. Moreover, the equivalent doses delivered to healthy substructures of the eye were also calculated. The results indicate that for the treatment of tumors located at the posterior part of the eye, an electron beam with energy of 10 MeV and incident angle of 45
Related content






Dry eye syndrome following proton therapy of ocular melanomas
ACTA OPHTHALMOLOGICA, Vol. 94, Iss. S256, 2016-10 ,pp. :


Dose conversion coefficients for electron exposure of the human eye lens
Physics in Medicine and Biology, Vol. 55, Iss. 13, 2010-07 ,pp. :