Reith, T.P.; Prah, M.A.; Choi, E.-J.; Lee, J.; Wujek, R.; Al-Gizawiy, M.; Chitambar, C.R.; Connelly, J.M.; Schmainda, K.M.
Basal Ganglia Iron Content Increases with Glioma Severity Using Quantitative Susceptibility Mapping: A Potential Biomarker of Tumor Severity. Tomography 2022, 8, 789-797.
https://doi.org/10.3390/tomography8020065
AMA Style
Reith TP, Prah MA, Choi E-J, Lee J, Wujek R, Al-Gizawiy M, Chitambar CR, Connelly JM, Schmainda KM.
Basal Ganglia Iron Content Increases with Glioma Severity Using Quantitative Susceptibility Mapping: A Potential Biomarker of Tumor Severity. Tomography. 2022; 8(2):789-797.
https://doi.org/10.3390/tomography8020065
Chicago/Turabian Style
Reith, Thomas P., Melissa A. Prah, Eun-Jung Choi, Jongho Lee, Robert Wujek, Mona Al-Gizawiy, Christopher R. Chitambar, Jennifer M. Connelly, and Kathleen M. Schmainda.
2022. "Basal Ganglia Iron Content Increases with Glioma Severity Using Quantitative Susceptibility Mapping: A Potential Biomarker of Tumor Severity" Tomography 8, no. 2: 789-797.
https://doi.org/10.3390/tomography8020065
APA Style
Reith, T. P., Prah, M. A., Choi, E. -J., Lee, J., Wujek, R., Al-Gizawiy, M., Chitambar, C. R., Connelly, J. M., & Schmainda, K. M.
(2022). Basal Ganglia Iron Content Increases with Glioma Severity Using Quantitative Susceptibility Mapping: A Potential Biomarker of Tumor Severity. Tomography, 8(2), 789-797.
https://doi.org/10.3390/tomography8020065