Cape Town - 2026 ISMRM-ISMRT Annual Meeting and Exhibition
9 May 2026 – 14 May 2026 · Cape Town, South Africa
504-04-003 ISMRM Abstract

Deuterium MR Spectroscopy of tumor models to examine their balance in glycolytic and oxidative metabolism

Accepted
Andor Veltien 1, Jack van Asten1, Eva Berkhout1, Sandra Heskamp1, Daan Boreel1, Arend Heerschap1
1Department of Medical Imaging, Radboud University Medical Center, Nijmegen, Netherlands
Presenting Author: Andor Veltien

Synopsis

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References

1. Boreel, et al. (2024) “Inhibition of OXPHOS induces metabolic rewiring and reduces hypoxia in murine tumor models” Clin Transl Radiat Oncol. 49:100875. DOI:10.1016/j.ctro.2024.100875 [doi]
2. Lu, et al. (2017). "Quantitative assessment of brain glucose metabolic rates using in vivo deuterium magnetic resonance spectroscopy." J Cereb Blood Flow Metab 37(11): 3518-3530. DOI:10.1177/0271678X17706444 [doi]
3. De Feyter, et al. (2018). "Deuterium metabolic imaging (DMI) for MRI-based 3D mapping of metabolism in vivo." Sci Adv 4(8): eaat7314. DOI:10.1126/sciadv.aat7314 [doi]
4. https://medicine.yale.edu/lab/dmi/
5. Vanhamme, et al. (1997). "Improved method for accurate and efficient quantification of MRS data with use of prior knowledge." J Magn Reson 129(1): 35-43. DOI:0.1006/jmre.1997.1244.
6. Kreis, et al. (2020). “Measuring Tumor Glycolytic Flux in Vivo by Using Fast Deuterium MRI” Radiology 2020 Feb;294(2):289-296. DOI:10.1148/radiol.2019191242 [doi]
7. Simões, et al. (2022). “Glucose fluxes in glycolytic and oxidative pathways detected in vivo by deuterium magnetic resonance spectroscopy reflect proliferation in mouse glioblastoma” Neuroimage Clin. 2022:33:102932. DOI:10.1016/j.nicl.2021.102932 [doi]

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