Published November 2011 | Version v1
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Dosimetric Comparison of Simulated Human Eye And Water Phantom in Investigation of Iodine Source Effects on Tumour And Healthy Tissues

Description

For better clinical analysis in ophthalmic brachytherapy dosimetry, there is a need for the dose determination in different parts of the eye, so simulating the eye and defining the material of any parts of that, is helpful for better investigating dosimetry in human eye. However in brachytherapy dosimetry, it is common to consider the water phantom as human eye globe. In this work, a full human eye is simulated with MCNP-4C code by considering all parts of the eye like; lens, cornea, retina, choroid, sclera, anterior chamber, optic nerve, bulk of the eye comprising vitreous body and tumour. The average dose in different parts of this full model of human eye is determined and the results are compared with the dose calculated in water phantom. The central axes depth dose and the dose in whole of the tumour for these two simulated eye model are calculated too, and the results are compared. At long last, as the aim of this work is comparing the result of investigating dosimetry between two water phantom as human eye and simulated eye globe, the ratios of the absorbed dose by the healthy tissues to the absorbed dose by the tumour are calculated in these simulations and the comparison between results is done eventually.

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Part of:
Proceedings of the eighth Nuclear and Particle Physics Conference (NUPPAC-2011)

Additional details

Publishing Information

Imprint Title
Proceedings of the eighth Nuclear and Particle Physics Conference (NUPPAC-2011)
Imprint Pagination
287 p.
Journal Page Range
p. 219
Report number
INIS-EG--251

Conference

Title
8. Conference on Nuclear and Particle Physics
Acronym
NUPPAC'11
Dates
20-24 Nov 2011
Place
Hurghada (Egypt)

Optional Information