Fariba Karimi was born in Iran. She joined the IT'IS Foundation in April 2020. Fariba earned her Bachelor and Master degrees in Electrical Engineering from Isfahan University of Technology. She focuses her work on computational electromagnetic and neuronal stimulation.
| Missey, F., Acerbo, E., Dickey, A.S., Trajlinek, J., Studnička, O., Lubrano, C., de Araújo e Silva, M., Brady, E., Všianský, V., Szabo, J., Dolezalova, I., Fabo, D., Pail, M., Gutekunst, C.A., Migliore, R., Migliore, M., Lagarde, S., Carron, R., Karimi, F., Astorga, R.C., Cassarà, A.M., Kuster, N., Neufeld, E., Bartolomei, F., Pedersen, N.P., Gross, R.E., Jirsa, V., Drane, D.L., Brázdil, M. & Williamson, A. Non-invasive temporal interference stimulation of the hippocampus suppresses epileptic biomarkers in patients with Epilepsy: biophysical differences between kilohertz and amplitude modulated stimulation. Brain Stimulation, 19(1):102981, 2026, doi:10.1016/j.brs.2025.11.008 |
| Chitnis, N., Karimi, F., Kühn, S., Fallahi, A., Christ, A. & Kuster, N. Traceable assessment of the absorbed power density of body mounted devices at frequencies above 10 GHz. Bioelectromagnetics, 46(6):e70018, 2025, doi:10.1002/bem.70018 |
| Karimi, F., Cassarà, A.M., Capstick, M., Kuster, N. & Neufeld, E. Safety of non-invasive brain stimulation in patients with implants: a computational risk assessment. Journal of Neural Engineering, 22(1):016039, 2025, doi:10.1088/1741-2552/ad8efa |
| Karimi, F., Neufeld, E., Fallahi, A., Kurtcuoglu, V. & Kuster, N. Efficient Fourier base fitting on masked or incomplete structured data. Frontiers in Neuroimaging, 4:1480807, 2025, doi:10.3389/fnimg.2025.1480807 |
| Karimi, F., Steiner, M., Newton, T., Lloyd, B.A.A., Cassarà, A.M., De Fontenay, P., Farcito, S., Triebkorn, J.P., Beanato, E., Wang, H., Iavarone, E., Hummel, F.C., Kuster, N., Jirsa, V. & Neufeld, E. Precision non-invasive brain stimulation: An in silico pipeline for personalized control of brain dynamics. Journal of Neural Engineering, 22(2):026061, 2025, doi:10.1088/1741-2552/adb88f |
| Boraschi, A., Spiegelberg, A., Karimi, F., Graf, K., Fallahi, A., Neufeld, E., Kuster, N. & Kurtcuoglu, V. The effect of body position change on noninvasively acquired intracranial pulse waves. Physiological Measurement, 44(3):035014, 2023, doi:10.1088/1361-6579/acc3d6 |
| Karimi, F., Neufeld, E., Fallahi, A., Boraschi, A., Zwanenburg, J.J., Spiegelberg, A., Kurtcuoglu, V. & Kuster, N. Theory for a non-invasive diagnostic biomarker for craniospinal diseases. NeuroImage: Clinical, 37:103280, 2023, doi:10.1016/j.nicl.2022.103280 |
| Spiegelberg, A., Boraschi, A., Karimi, F., Capstick, M., Fallahi, A., Neufeld, E., Kuster, N. & Kurtcuoglu, V. Noninvasive monitoring of intracranial pulse waves. IEEE Transactions on Biomedical Engineering, 70(1):144-153, 2023, doi:10.1109/TBME.2022.3186748 |
| Guidon, M., Kaiser, D., Iavarone, E., Anderegg, S., Bisgaard, M., Bujard, C., Cassarà, A.M., Crespo-Valero, P., Drobuliak, M., Fasse, A., Hrytsuk, Y., Karimi, F., Maiz, O., Neagu, A., Newton, T., Ordonez, J., Oetiker, T., Pascual, I., Querido, J., Regel, S.J., Steiner, M., Van Geit, W., Zhuang, K., Weitz, A., Chavannes, N., Kuster, N. & Neufeld, E. Shaping a collaborative, sustainable, accessible, and reproducible future for computational modeling. bioRxiv, 2025, doi:10.1101/2025.06.12.656959 |
| Karimi, F., Cassarà, A.M., Capstick, M., Kuster, N. & Neufeld, E. Safety of non-invasive brain stimulation in patients with implants: A computational study. bioRxiv, 2024, doi:10.1101/2024.04.19.590046 |
| Missey, F., Acerbo, E., Dickey, A.S., Trajlinek, J., Studnička, O., Lubrano, C., De Araújo E Silva, M., Brady, E., Všianský, V., Szabo, J., Dolezalova, I., Fabo, D., Pail, M., Gutekunst, C.A., Migliore, R., Migliore, M., Lagarde, S., Carron, R., Karimi, F., Astorga, R.C., Cassara, A.M., Kuster, N., Neufeld, E., Bartolomei, F., Pedersen, N.P., Gross, R.E., Jirsa, V., Drane, D.L., Brázdil, M. & Williamson, A. Non-invasive temporal interference stimulation of the hippocampus suppresses epileptic biomarkers in patients with epilepsy: Biophysical differences between kilohertz and amplitude modulated stimulation. medRxiv, 2024, doi:10.1101/2024.12.05.24303799 |
| Billi, C., Newton, T.H., Karimi, F., Kuster, N. & Neufeld, E. A personalized topographical thalamocortical model of slow wave-spindle interactions. In Abstract Collection of the Swiss Society for Neuroscience 25th Annual Meeting (SSN 2025), Lausanne, Switzerland, February 6–7, 2025 |
| Cassarà, A.M., Karimi, F., Newton, T.H., Capstick, M.H., Kuster, N., Neufeld, E. & Ruff, T. In silico safety investigation of temporal interference stimulation and electric stimulation in the presence of implants. Brain Stimulation 2025, 18:296, doi:10.1016/j.brs.2024.12.244 |
| Karimi, F., Cassara, A., Neufeld, E., Capstick, M.H. & Kuster, N. Assessment of non-invasive brain stimulation safety in the presence of implanted electrodes. In Abstract Collection of the 4th Annual Meeting of the BioEM Society (BioEM 2025), Rennes, France, June 22–27, 2025, BioEM 2025 |
| Karimi, F., Cassarà, A.M., Capstick, M.H., Kuster, N. & Neufeld, E. Quantifying Risks of Non-Invasive Brain Stimulation in Patients with Implants: A Computational Study.. In Abstract Collection of the Swiss Society for Neuroscience 25th Annual Meeting (SSN 2025), Lausanne, Switzerland, February 6–7, 2025, pages 97, SSN 2025 |
| Karimi, F., Newton, T.H., Steiner, M., Cassarà, A.M., Kuster, N. & Neufeld, E. Individualized brain network modeling for precision non-invasive stimulation planning. In Abstract Collection of the Zentrum für Neurowissenschaften Symposium 2025 (ZNZ Symposium 2025), Zurich, Switzerland, September 11, 2025 |
| Karimi, F., Newton, T.H., Steiner, M., Cassarà, A.M., Kuster, N. & Neufeld, E. Personalized computational models for selective and impact-driven brain stimulation. In Abstract Collection of the 34th Annual Computational Neuroscience Meeting (CNS*2025), Florence, Italy, July 5–9, 2025, 54:S158—S159, Journal of Computational Neuroscience |
| Karimi, F., Newton, T.H., Steiner, M., Ordóñez, J.G., Beanato, E., Hummel, F.C., Kuster, N. & Neufeld, E. Highly personalized modeling of Stimulation-driven brain network responses for next-generation neuromodulation. In Brain Stimulation, 18:295-296, Brain Stimulation 2025, doi:10.1016/j.brs.2024.12.243 |
| Karimi, F., Ruff, T., Vörös, J., Kuster, N., Neufeld, E. & Newton, T.H. Mechanistic Insights into Temporal Interference Stimulation from Computational models and human iPSC-Based Networks. , Bernstein Conference 2025 |
| Neufeld, E., Bujard, C., Steiner, M., Karimi, F. & Kuster, N. Superior Temporal Interference stimulation targeting using surrogate-based multi-goal optimization. In Abstract Collection of the 34th Annual Computational Neuroscience Meeting (CNS*2025), Florence, Italy, July 5–9, 2025, 54:S243—S244, Journal of Computational Neuroscience |
| Santanche, S., Cassarà, A.M., Colella, M., Billi, C., Karimi, F., Lloyd, B., Kuster, N., Liberti, M. & Neufeld, E. Personalized TMS planning tool based on electrophysiological response and brain network dynamics predictions. In Abstract Collection of the 4th Annual Meeting of the BioEM Society (BioEM 2025), Rennes, France, June 22–27, 2025, pages 76, BioEM 2025 |
| Boraschi, A., Spiegelberg, A., Karimi, F., Capstick, M., Fallahi, A., Neufeld, E., Kuster, N. & Kurtcuoglu, V. Noninvasive measurement of head dielectric properties as a novel method for monitoring intracranial volume variations. In Journal of affective disorders reports, 12:100551, doi:10.1016/j.jadr.2023.100551 |
| Chitnis, N., Karimi, F., Fallahi, A., Kühn, S. & Kuster, N. Traceable absorbed power density assessment system in the 28 GHz band. In Abstract Collection of the 2nd Annual Meeting of the BioEM Society (BioEM 2023), Oxford, UK, June 18 – 23, 2023, BioEM 2023 |
| Karimi, F., Kühn, S., Xi, J., Reboux, S., Christ, A., Fallahi, A., Meyer, R. & Kuster, N. Method and implementations to measure the absorbed power density. In Proceedings of the 2022 IEEE MTT-S International Microwave Biomedical Conference (IMBioC), pages 129-131, IEEE, doi:10.1109/IMBioC52515.2022.9790128 |