Detection of Metabolic Change in Glioblastoma Cells after Radiotherapy Using Hyperpolarized 13C-MRI

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Dynamic nuclear polarization‐magnetic resonance imaging chemical shift imaging with hyperpolarized [1‐13C] pyruvate was conducted to evaluate the metabolic change in glycolytic profiles after radiation of two glioma stem‐like cell‐derived gliomas and an adherent human glioblastoma cell line in an orthotopic xenograft mouse model.
[Nmr in Biomedicine]
Kawai, T., Brender, J. R., Lee, J. A., Kramp, T., Kishimoto, S., Krishna, M. C., Tofilon, P., & Camphausen, K. A. (n.d.). Detection of metabolic change in glioblastoma cells after radiotherapy using hyperpolarized 13C-MRI. NMR in Biomedicine, n/a(n/a), e4514. https://doi.org/https://doi.org/10.1002/nbm.4514 Cite
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