Zugriffsnummer 40335
Dokumenttyp Zeitschriftenartikel Open Access Gold
Peer Review mit Peer Review
Sprache Englisch
Titel Experimental MRI monitoring of renal blood volume fraction variations en route to renal magnetic resonance oximetry
Autor(in); Institution
Pohlmann, A.; Berlin Ultrahigh Field Facility (B.U.F.F.), Max-Delbrueck Center for Molecular Medicine, Berlin, GERMANY
Cantow, K.; Institut für vegetative Physiologie, Charité, Universitätsmedizin Berlin, Berlin, GERMANY
Huelnhagen, T.; Berlin Ultrahigh Field Facility (B.U.F.F.), Max-Delbrueck Center for Molecular Medicine, Berlin, GERMANY
Grosenick, Dirk; 8.3, Biomedizinische Optik, PTB-Berlin
dos Santos Periquito, J.; Berlin Ultrahigh Field Facility (B.U.F.F.), Max-Delbrueck Center for Molecular Medicine, Berlin, GERMANY
Boehmert, L.; Berlin Ultrahigh Field Facility (B.U.F.F.), Max-Delbrueck Center for Molecular Medicine, Berlin, GERMANY
Gladytz, Thomas; 8.3, Biomedizinische Optik, PTB-Berlin
Waiczies, S.; Berlin Ultrahigh Field Facility (B.U.F.F.), Max-Delbrueck Center for Molecular Medicine, Berlin, GERMANY
Flemming, B.; Institut für vegetative Physiologie, Charité, Universitätsmedizin Berlin, Berlin, GERMANY
Seeliger, E.; Institut für vegetative Physiologie, Charité, Universitätsmedizin Berlin, Berlin, GERMANY
Niendorf, T.; Berlin Ultrahigh Field Facility (B.U.F.F.), Max-Delbrueck Center for Molecular Medicine, Berlin, GERMANY
Quelle/Jahr Tomography: 3 (2017), 4, 188 - 200
Availability [online only]
ISSN 2379-1381
DOI
Verlag Grapho Publications
Freie Schlagworte kidney ; oxygenation ; blood volume fraction ; magnetic resonance imaging ; blood oxygenation level dependent (BOLD) ; ultrasmall superparamagnetic iron oxide (USPIO)
Zusammenfassung Diagnosis of early-stage acute kidney injury (AKI) will benefit from a timely identification of local tissue hypoxia. Renal tissue hypoxia is an early feature in AKI pathophysiology, and renal oxygenation is increasingly being assessed through T*2-weighted magnetic resonance imaging (MRI). However, changes in renal blood volume fraction (BVf) confound renal T*2. The aim of this study was to assess the feasibility of intravascular contrast-enhanced MRI for monitoring renal BVf during physiological interventions that are concomitant with variations in BVf and to explore the possibility of correcting renal T*2 for BVf variations. A dose-dependent study of the contrast agent ferumoxytol was performed in rats. BVf was monitored throughout short-term occlusion of the renal vein, which is known to markedly change renal blood partial pressure of O2 and BVf. BVf calculated from MRI measurements was used to estimate oxygen saturation of hemoglobin (SO2). BVf and SO2were benchmarked against cortical data derived from near-infrared spectroscopy. As estimated from magnetic resonance parametric maps of T2 and  T*2, BVf was shown to increase, whereas SO2 was shown to decline during venous occlusion (VO). This observation could be quantitatively reproduced in testretest scenarios. Changes in BVf and SO2 were in good agreement with data obtained from near-infrared spectroscopy. Our findings provide motivation to advance multiparametric MRI for studying AKIs, with the ultimate goal of translating MRI-based renal BVf mapping into clinical practice en route noninvasive renal magnetic resonance oximetry as a method of assessing AKI and progression to chronic damage.
Kostenfreier Zugang Open Access Gold
Rechteinformation CC BY-NC-ND 4.0 ; Creative Commons Attribution NonCommercial NoDerivatives 4.0 License

Zitierung

Pohlmann, A., Cantow, K., Huelnhagen, T., Grosenick, D., dos Santos Periquito, J., Boehmert, L., Gladytz, T., Waiczies, S., Flemming, B., Seeliger, E., & Niendorf, T. (2017). Experimental MRI monitoring of renal blood volume fraction variations en route to renal magnetic resonance oximetry. Tomography, 3(4), 188–200. http://doi.org/10.18383/j.tom.2017.00012

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