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Updated: Feb 24, 2026

An Aptamer-based Sensor for Unchelated GadoliniumIII
Published on: January 9, 2017
Coherent normalization for in vivo measurements of gadolinium in bone
Z Keldani1, M L Lord2, F E McNeill3
1Department of Physics, Ryerson University, Toronto, M5B 2K3, Canada.
Objective:
Recent evidence of gadolinium (Gd) deposition in bones of healthy individuals who have previously received Gd-based contrast agents (GBCAs) for MRI has led to a demand for in vivo measurement techniques. The technique of x-ray fluorescence provides a low risk and painless method to assess Gd deposition in bone, and has the potential to be a useful clinical tool. However, interpatient variability creates a challenge while performing in vivo measurements.
Approach:
We explored the use of coherent normalization, which involves normalizing the Gd K x-rays to the coherent scattered γ-ray from the excitation source, for bone Gd measurements through a series of phantom-based experiments and Monte Carlo simulations.
Main Results:
We found coherent normalization is able to correct for variation in overlying tissue thickness over a wide range (0-12.2 mm). The Gd signal to coherent signal ratio is independent of tissue thickness for both experiments and Monte Carlo simulations.
Significance:
Coherent normalization has been demonstrated to be used in practice with normal healthy adults to improve in vivo bone Gd measurements.
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