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Article

Demonstration of Alpha-Band Entrainment via Low-Field Magnetic Stimulation: A Simulation-Driven Proof of Concept

1
Faculty of Applied Sciences, National University of Science and Technology Politehnica Bucharest, 060042 Bucharest, Romania
2
Veruvis Research Center, 011772 Bucharest, Romania
3
Faculty of Communications and Electronic Systems for Defence and Security, Ferdinand I Military Technical Academy, 050141 Bucharest, Romania
4
Faculty of Automatic Control and Computers, National University of Science and Technology Politehnica Bucharest, 060042 Bucharest, Romania
5
Faculty of Law and Administrative Sciences, Ovidius University, 900470, Constanța, Romania
*
Authors to whom correspondence should be addressed.
Bioengineering 2026, 13(4), 395; https://doi.org/10.3390/bioengineering13040395
Submission received: 23 February 2026 / Revised: 20 March 2026 / Accepted: 24 March 2026 / Published: 29 March 2026
(This article belongs to the Special Issue Wearable Devices for Neurotechnology)

Abstract

Low-field magnetic stimulation (LFMS) has been proposed as a non-invasive approach for modulating cortical oscillations through electromagnetic coupling. Frequency-aligned enhancement of alpha-band activity is of interest due to its association with cortical inhibitory balance and relaxed wakefulness. This study investigates whether a 10 Hz LFMS applied to the occipital area can induce measurable alpha-band modulation. Electromagnetic simulations were performed to determine magnetic flux distributions within a simplified spherical head model with magnetic susceptibility, which was approximating the brain’s parameters. The 10 Hz stimulation waveform—a positive ramp sawtooth—was analyzed in both time and frequency domains. Electroencephalographic (EEG) recordings were obtained before and after stimulation, and spectral analyses of relevant occipital channels were used to quantify the power redistributions. Simulations indicated localized magnetic field gradients in the occipital region. Post-stimulation EEG recordings showed a redistribution of spectral power toward the alpha-band, representing approximately 50% of total occipital spectral power, with relative increases exceeding 140% across the analyzed channels. These combined modeling and electrophysiological findings provide preliminary proof-of-concept evidence that frequency-aligned LFMS is associated with a redistribution of spectral power toward the alpha-band.
Keywords: brainwave entrainment; figure-of-eight coil; neural oscillations; neuromodulation brainwave entrainment; figure-of-eight coil; neural oscillations; neuromodulation

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MDPI and ACS Style

Dămășaru, C.; Roșu, G.; Tuță, L.; Cernian, A.; Rus, M. Demonstration of Alpha-Band Entrainment via Low-Field Magnetic Stimulation: A Simulation-Driven Proof of Concept. Bioengineering 2026, 13, 395. https://doi.org/10.3390/bioengineering13040395

AMA Style

Dămășaru C, Roșu G, Tuță L, Cernian A, Rus M. Demonstration of Alpha-Band Entrainment via Low-Field Magnetic Stimulation: A Simulation-Driven Proof of Concept. Bioengineering. 2026; 13(4):395. https://doi.org/10.3390/bioengineering13040395

Chicago/Turabian Style

Dămășaru, Costin, Georgiana Roșu, Leontin Tuță, Alexandra Cernian, and Mihaela Rus. 2026. "Demonstration of Alpha-Band Entrainment via Low-Field Magnetic Stimulation: A Simulation-Driven Proof of Concept" Bioengineering 13, no. 4: 395. https://doi.org/10.3390/bioengineering13040395

APA Style

Dămășaru, C., Roșu, G., Tuță, L., Cernian, A., & Rus, M. (2026). Demonstration of Alpha-Band Entrainment via Low-Field Magnetic Stimulation: A Simulation-Driven Proof of Concept. Bioengineering, 13(4), 395. https://doi.org/10.3390/bioengineering13040395

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