Design of a phantom equivalent to measure bone-fluorine in a human's hand via delayed neutron activation analysis.

F Mostafaei, F E McNeill, D R Chettle, W V Prestwich, M Inskip

Journal: Physiological measurement 2013;34(5):503-12

PMID: 23587669

Abstract

Fluorine is an element that can be either beneficial or harmful, depending on the total amount accumulated in the teeth or bones. In our laboratory, we have developed a non-invasive technique for the in vivo measurement of fluoride in bone using neutron activation analysis and performed the first pilot human study. Fluoride in humans is quantified by comparing the γ-ray signal from a person to the γ-ray signal obtained from appropriate anthropomorphic calibration phantoms. An identified problem with existing fluoride phantoms is contamination with aluminum. Aluminum creates an interfering γ-ray signal which, although it can be subtracted out, increases the uncertainty in the measurement and worsens the detection limit. This paper outlines a series of studies undertaken to develop a better calibration phantom for fluorine measurement, which does not have aluminum contamination.

Address: Medical Physics and Applied Radiation Sciences, McMaster University, Hamilton, ON, Canada. [email protected]

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