article
Measurement of radiation dose distributions by nuclear magnetic resonance (NMR) imaging
Physics in Medicine and Biology · 1984 · Vol. 29(10) · pp. 1189–1197
John C. Gore✉(Yale University)Young Sun Kang(Yale University)
Abstract
A method is described for determining the spatial distribution of radiation dose in a tissue-equivalent phantom using nuclear magnetic resonance imaging. The conversion of ferrous ions to ferric by ionising radiation alters the magnetic moment and electron spin relaxation times of the metal ion. The spin relaxation times (T1 and T2) of the hydrogen nuclei in an aqueous solution of a ferrous salt are consequently reduced substantially. These changes in T1 and T2 can be measured using standard NMR techniques. The same conversion is used in conventional Fricke dosimetry, which can be used to calibrate the technique.
Advanced MRI Techniques and ApplicationsAdvanced NMR Techniques and ApplicationsAtomic and Subatomic Physics ResearchNuclear magnetic resonanceFerrousImaging phantomMaterials scienceRelaxation (psychology)Ionizing radiationRadiationDosimetryIonChemistry
MeSH terms
HumansModels, AnatomicMagnetic Resonance SpectroscopyRadiation Dosage
Citations
509
FWCI
0.23
field-weighted impact
References
7
Percentile
54%
vs. same field & year
Citations per year
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References
Relaxation Processes in a System of Two Spins
Physical Review · 1955 · 3,233 citations
Relaxation Effects in Nuclear Magnetic Resonance Absorption
Physical Review · 1948 · 6,454 citations
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