Graphite foils as potential skin and epithelium dosimeters at therapeutic photon energies

Document Type

Article

Publication Date

8-1-2024

Abstract

This work builds upon a prior study, examining the dosimetric utility of pencil lead and thin graphitic sheets, focusing upon the measurement of skin doses within the mammographic regime. In recognizing the near softtissue equivalence of graphite and the earlier -observed favourable thermoluminescence yield of thin sheets of graphite, this has led to present study of 50 mu m thick graphite for parameters typical of external beam fractionated radiotherapy and skin dose evaluations. The graphite layers were annealed and then stacked to form an assembly of 0.5 mm nominal thickness. Using a 6 MV photon beam and delivering doses from 2- to 60 Gy, irradiations were conducted, the assembly first forming a superficial layer to a solid water phantom and subsequently underlying a 1.5 cm bolus, seeking to circumvent the build-up to electronic equilibrium for skin treatments. Investigations were made of several dosimetric properties arising from the thermoluminescence yield of the 50 mu m thick graphite slabs, in particular proportionality and sensitivity to dose. The results show excellent sensitivity within the dose range of interest, the thermoluminescence response varying with increasing depth through the stacked graphite layers, obtaining a coefficient of determination of 90%. Acknowledging there to be considerable challenge in accurately matching skin thickness with dose, the graphite sheets have nevertheless shown considerable promise as dosimeters of skin, sensitive in determination of dose from the surface of the graphite through to sub -dermal depth thicknesses.

Keywords

TL dosimetry, Graphite foils, Dermal dose, External beam radiotherapy

Divisions

fac_med,PHYSICS

Funders

King Saud University (RGP-VPP-246)

Publication Title

Applied Radiation and Isotopes

Volume

210

Publisher

Elsevier

Publisher Location

THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND

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