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Optimal energy fluorescence sources for in vivo...
Journal article

Optimal energy fluorescence sources for in vivo x-ray fluorescence measurements of bone strontium

Abstract

The choice of an optimum energy fluorescence source for in vivo x-ray fluorescence (XRF) can be challenging. This article describes a Monte Carlo study that systematically investigates possible sources for the in vivo XRF measurement of strontium in bone, with the ultimate goal of improving current measurement systems. A benchmarked EGS5 model was used to test source energies ranging from 17.2 keV to 21.7 keV to determine which source energies maximized the strontium XRF signal. A systematic search was then conducted to find potential radioisotope sources in the optimal energy range and simulations were performed of each source. The overall conclusion is that 103Pd is a promising alternative to the 109Cd and 125I radioisotope sources used in prior systems. Monte Carlo studies suggest, however, that best performance could be obtained using a portable XRF gun with a rhodium target, although this would deliver a higher radiation dose.

Authors

Bickley LM; Da Silva E; McNeill FE

Journal

Applied Radiation and Isotopes, , ,

Publisher

Elsevier

Publication Date

October 1, 2026

DOI

10.1016/j.apradiso.2026.112965

ISSN

0969-8043

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