Quantitative susceptibility mapping (QSM) as a means to measure brain iron?: a post mortem validation study

Quantitative susceptibility mapping (QSM) is a novel technique which allows determining the bulk magnetic susceptibility distribution of tissue in vivo from gradient echo magnetic resonance phase images. It is commonly assumed that paramagnetic iron is the predominant source of susceptibility variat...

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Hauptverfasser: Langkammer, Christian (VerfasserIn) , Schweser, Ferdinand (VerfasserIn) , Krebs, Nikolaus (VerfasserIn) , Deistung, Andreas (VerfasserIn) , Goessler, Walter (VerfasserIn) , Scheurer, Eva (VerfasserIn) , Sommer, Karsten (VerfasserIn) , Reishofer, Gernot (VerfasserIn) , Yen, Kathrin (VerfasserIn) , Fazekas, Franz (VerfasserIn) , Ropele, Stefan (VerfasserIn) , Reichenbach, Jürgen R. (VerfasserIn)
Dokumenttyp: Article (Journal)
Sprache:Englisch
Veröffentlicht: 24 May 2012
In: NeuroImage
Year: 2012, Jahrgang: 62, Heft: 3, Pages: 1593-1599
ISSN:1095-9572
DOI:10.1016/j.neuroimage.2012.05.049
Online-Zugang:Verlag, Volltext: http://dx.doi.org/10.1016/j.neuroimage.2012.05.049
Verlag, Volltext: http://www.sciencedirect.com/science/article/pii/S105381191200537X
Volltext
Verfasserangaben:Christian Langkammer, Ferdinand Schweser, Nikolaus Krebs, Andreas Deistung, Walter Goessler, Eva Scheurer, Karsten Sommer, Gernot Reishofer, Kathrin Yen, Franz Fazekas, Stefan Ropele, Jürgen R. Reichenbach

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520 |a Quantitative susceptibility mapping (QSM) is a novel technique which allows determining the bulk magnetic susceptibility distribution of tissue in vivo from gradient echo magnetic resonance phase images. It is commonly assumed that paramagnetic iron is the predominant source of susceptibility variations in gray matter as many studies have reported a reasonable correlation of magnetic susceptibility with brain iron concentrations in vivo. Instead of performing direct comparisons, however, all these studies used the putative iron concentrations reported in the hallmark study by Hallgren and Sourander (1958) for their analysis. Consequently, the extent to which QSM can serve to reliably assess brain iron levels is not yet fully clear. To provide such information we investigated the relation between bulk tissue magnetic susceptibility and brain iron concentration in unfixed (in situ) post mortem brains of 13 subjects using MRI and inductively coupled plasma mass spectrometry. A strong linear correlation between chemically determined iron concentration and bulk magnetic susceptibility was found in gray matter structures (r=0.84, p<0.001), whereas the correlation coefficient was much lower in white matter (r=0.27, p<0.001). The slope of the overall linear correlation was consistent with theoretical considerations of the magnetism of ferritin supporting that most of the iron in the brain is bound to ferritin proteins. In conclusion, iron is the dominant source of magnetic susceptibility in deep gray matter and can be assessed with QSM. In white matter regions the estimation of iron concentrations by QSM is less accurate and more complex because the counteracting contribution from diamagnetic myelinated neuronal fibers confounds the interpretation. 
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