Cape Town - 2026 ISMRM-ISMRT Annual Meeting and Exhibition
9 May 2026 – 14 May 2026 · Cape Town, South Africa
404-04-007 ISMRM Abstract

Comparing the Vascular density and iron deposition for the thalamus subnuclei using USPIO-MRI and QSM at 3T

Accepted
Sagar Buch 1, Yongsheng Chen2, Rohit Marawar1, Vaibhav Diwadkar3, Maysaa Basha1, Yulin Ge4, E. Mark Haacke1
1Department of Neurology, Wayne State University School of Medicine, Detroit, United States of America
2Wayne State University School of Medicine, Detroit, United States of America
3Department of Psychiatry & Behavioral Neurosciences, Wayne State University School of Medicine, Detroit, United States of America
4The Center for Advanced Imaging Innovation and Research (CAI2R), Department of Radiology, NYU Grossman School of Medicine, New York, United States of America
Presenting Author: Sagar Buch

Synopsis

Motivation:
Goals:
Approach:
Results:
Full abstract & presentation

The full text, figures, and any recorded presentation for this abstract are not shown here. Log in if you are a member or registered attendee with access.

Full abstracts, figures, and presentations for Cape Town - 2026 ISMRM-ISMRT Annual Meeting and Exhibition are available to registered attendees. This content becomes freely available to the public roughly two years after the meeting.

To request or purchase access, contact the ISMRM Central Office at info@ismrm.org.

Log in

References

1. Fama R, Sullivan EV. Thalamic structures and associated cognitive functions: Relations with age and aging. Neurosci Biobehav Rev. 2015;54:29-37. doi:10.1016/j.neubiorev.2015.03.008 [doi]
2. Hwang K, Bertolero MA, Liu WB, D’Esposito M. The Human Thalamus Is an Integrative Hub for Functional Brain Networks. J Neurosci. 2017;37(23):5594-5607. doi:10.1523/JNEUROSCI.0067-17.2017 [doi]
3. Lee J, Kim HJ. Normal Aging Induces Changes in the Brain and Neurodegeneration Progress: Review of the Structural, Biochemical, Metabolic, Cellular, and Molecular Changes. Front Aging Neurosci. 2022;14:931536. doi:10.3389/fnagi.2022.931536 [doi]
4. Buch S, Wang Y, Park MG, et al. Subvoxel vascular imaging of the midbrain using USPIO-Enhanced MRI. NeuroImage. 2020;220:117106. doi:10.1016/j.neuroimage.2020.117106 [doi]
5. Buch S, Chen Y, Jella P, Ge Y, Haacke EM. Vascular Mapping of the Human Hippocampus Using Ferumoxytol-Enhanced MRI. NeuroImage. Published online February 2, 2022:118957. doi:10.1016/j.neuroimage.2022.118957 [doi]
6. Chen Y, Liu S, Wang Y, Kang Y, Haacke EM. STrategically Acquired Gradient Echo (STAGE) imaging, part I: Creating enhanced T1 contrast and standardized susceptibility weighted imaging and quantitative susceptibility mapping. Magn Reson Imaging. 2018;46:130-139. doi:10.1016/j.mri.2017.10.005 [doi]
7. Wang Y, Chen Y, Wu D, et al. STrategically Acquired Gradient Echo (STAGE) imaging, part II: Correcting for RF inhomogeneities in estimating T1 and proton density. Magn Reson Imaging. 2018;46:140-150. doi:10.1016/j.mri.2017.10.006 [doi]
8. Haacke EM, Chen Y, Utriainen D, et al. STrategically Acquired Gradient Echo (STAGE) imaging, part III: Technical advances and clinical applications of a rapid multi-contrast multi-parametric brain imaging method. Magn Reson Imaging. 2020;65:15-26. doi:10.1016/j.mri.2019.09.006 [doi]
9. Tang J, Liu S, Neelavalli J, Cheng YCN, Buch S, Haacke EM. Improving susceptibility mapping using a threshold-based K-space/image domain iterative reconstruction approach. Magn Reson Med. 2013;69(5):1396-1407. doi:10.1002/mrm.24384 [doi]
10. Iglesias JE, Insausti R, Lerma-Usabiaga G, et al. A probabilistic atlas of the human thalamic nuclei combining ex vivo MRI and histology. NeuroImage. 2018;183:314-326. doi:10.1016/j.neuroimage.2018.08.012 [doi]

Cite this abstract