Cape Town - 2026 ISMRM-ISMRT Annual Meeting and Exhibition
9 May 2026 – 14 May 2026 · Cape Town, South Africa
331-03-011 / 331-03-011 ISMRM Abstract

TMS as a complementary tool for functional motor mapping in stroke patients with limited fMRI task performance

Accepted
Evgenii Kim 1, Danyal F Bhutto1, Mohammad Daneshzand1, Sergey Makaroff2, Tejaswini Sudhakar3,4, Dylan Edwards3,4, Aapo Nummenmaa1
1Department of Radiology, Athinoula A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital and Harvard Medical School, Charlestown, United States of America
2Electrical and Computer Engineering, Worcester Polytechnic Institute, Worcester, United States of America
3Jefferson Moss Rehabilitation Research Institute, Philadelphia, United States of America
4Department of Rehabilitation Medicine, Thomas Jefferson University, Philadelphia, United States of America
Presenting Author: Evgenii Kim

Synopsis

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References

1. Yu, P. et al. Neuroimaging of motor recovery after ischemic stroke− functional reorganization of motor network. Neuroimage Clin 43, 103636 (2024).
2. Seto, E. et al. Quantifying head motion associated with motor tasks used in fMRI. Neuroimage 14, 284–297 (2001).
3. Reddy, N. A., Zvolanek, K. M., Moia, S., Caballero-Gaudes, C. & Bright, M. G. Denoising task-correlated head motion from motor-task fMRI data with multi-echo ICA. Imaging Neuroscience 2, 1–30 (2024).
4. Ruohonen, J. & Karhu, J. Navigated transcranial magnetic stimulation. Neurophysiologie clinique/Clinical neurophysiology 40, 7–17 (2010).
5. Chi, N.-F. et al. Cerebral motor functional connectivity at the acute stage: an outcome predictor of ischemic stroke. Sci Rep 8, 16803 (2018).
6. Dannhauer, M. et al. Electric field modeling in personalizing transcranial magnetic stimulation interventions. Biol Psychiatry 95, 494–501 (2024).
7. Sollmann, N., Krieg, S. M., Säisänen, L. & Julkunen, P. Mapping of motor function with neuronavigated transcranial magnetic stimulation: a review on clinical application in brain tumors and methods for ensuring feasible accuracy. Brain Sci 11, 897 (2021).
8. Jenkinson, M., Beckmann, C. F., Behrens, T. E. J., Woolrich, M. W. & Smith, S. M. Fsl. Neuroimage 62, 782–790 (2012).
9. Saturnino, G. B. et al. SimNIBS 2.1: a comprehensive pipeline for individualized electric field modelling for transcranial brain stimulation. Brain and human body modeling: computational human modeling at EMBC 2018 3–25 (2019).
10. Makaroff, S. N. et al. A fast direct solver for surface-based whole-head modeling of transcranial magnetic stimulation. Sci Rep 13, 18657 (2023).

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