Effects of Brain Stimulation on Motor Cortex

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Hasanzadeh, F., Stern, Y., Habeck, C. G., & Gazes, E. (2024). Task‐related brain activation moderates age‐related structural decline in cognitive flexibility: A longitudinal study. Alzheimer’s & Dementia, 20(S3). Portico. https://doi.org/10.1002/alz.092613
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Cho, H. J., Shin, H.-W., Panyakaew, P., Kassavetis, P., Popa, T., Wu, T., Leodori, G., Camacho, T., Singh, S., Meunier, S., & Hallett, M. (2024). Differential induction of Parieto-motor plasticity in writer’s cramp and cervical dystonia. Neurobiology of Disease, 202, 106724. https://doi.org/10.1016/j.nbd.2024.106724
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Smilowska, K., Mehanna, R., Fleisher, J. E., Alcalay, R. N., Kumar, K. R., Marras, C., Oosterbaan, A. M., Post, B., Ross, O. A., Pimentel Piemonte, M. E., Fraix, V., Moro, E., King Tan, E., & Savica, R. (2024). Unmet Need in Early-Onset Parkinson’s Disease: Deep Brain Stimulation and Pregnancy. Journal of Parkinson’s Disease, 1–6. https://doi.org/10.3233/jpd-240088
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Muratore, A. F., Foerde, K., Lloyd, E. C., Touzeau, C., Uniacke, B., Aw, N., Semanek, D., Wang, Y., Walsh, B. T., Attia, E., Posner, J., & Steinglass, J. E. (2024). Reduced dorsal fronto-striatal connectivity at rest in anorexia nervosa. Psychological Medicine, 1–10. https://doi.org/10.1017/s003329172400031x
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Wang, L., Higgins, D., Delgardo, M., Chang, C., Hamberger, M. J., & McKhann, G. M. (2024). Awake intraoperative mapping for the prevention of amusia. Neurosurgical Focus, 56(2), E8. https://doi.org/10.3171/2023.11.focus23600
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Sehatpour, P., Kreither, J., Lopez-Calderon, J., Shastry, A. M., De Baun, H. M., Martinez, A., & Javitt, D. C. (2023). Network-level mechanisms underlying effects of transcranial direct current stimulation (tDCS) on visuomotor learning in schizophrenia. Translational Psychiatry, 13(1). https://doi.org/10.1038/s41398-023-02656-3
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George, M. S., Huffman, S., Doose, J., Sun, X., Dancy, M., Faller, J., Li, X., Yuan, H., Goldman, R. I., Sajda, P., & Brown, T. R. (2023). EEG synchronized left prefrontal transcranial magnetic stimulation (TMS) for treatment resistant depression is feasible and produces an entrainment dependent clinical response: A randomized controlled double blind clinical trial. Brain Stimulation, 16(6), 1753–1763. https://doi.org/10.1016/j.brs.2023.11.010
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Pantazatos, S. P., Mclntosh, J. R., Saber, G. T., Sun, X., Doose, J., Faller, J., Lin, Y., Teves, J. B., Blankenship, A., Huffman, S., Goldman, R. I., George, M. S., Sajda, P., & Brown, T. R. (2023). The timing of transcranial magnetic stimulation relative to the phase of prefrontal alpha EEG modulates downstream target engagement. Brain Stimulation, 16(3), 830–839. https://doi.org/10.1016/j.brs.2023.05.007
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He, H., Sun, X., Doose, J., Blankenship, A., Mclntosh, J., Saber, G., Faller, J., Lin, Y., Teves, J., Huffman, S., Pantazatos, S., Goldman, R., George, M., Brown, T., & Sajda, P. (2023). Whole-brain analysis of concurrent TMS-EEG-fMRI reveals brain-wide state-dependent TMS effects. Brain Stimulation, 16(1), 405. https://doi.org/10.1016/j.brs.2023.01.825
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Banks, G. P., Heilbronner, S. R., Goodman, W., & Sheth, S. A. (2022). A population-normalized tractographic fiber atlas of the anterior limb of the internal capsule: relevance to surgical neuromodulation. Journal of Neurosurgery, 137(5), 1278–1288. https://doi.org/10.3171/2022.1.jns211935
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Faller, J., Doose, J., Sun, X., Mclntosh, J. R., Saber, G. T., Lin, Y., Teves, J. B., Blankenship, A., Huffman, S., Goldman, R. I., George, M. S., Brown, T. R., & Sajda, P. (2022). Daily prefrontal closed-loop repetitive transcranial magnetic stimulation (rTMS) produces progressive EEG quasi-alpha phase entrainment in depressed adults. Brain Stimulation, 15(2), 458–471. https://doi.org/10.1016/j.brs.2022.02.008
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Hou, Z., Li, T., He, X., Zhang, Y., Chen, H., Jiang, W., Yin, Y., & Yuan, Y. (2022). Distinct Features of Cerebral Blood Flow and Spontaneous Neural Activity as Integrated Predictors of Early Response to Antidepressants. Frontiers in Psychiatry, 12. https://doi.org/10.3389/fpsyt.2021.788398
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