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February 28, 2026Scientific Reports0 citationsOpen Access

Electromagnetic field stimulation modulates working memory and cortical alpha oscillations in healthy adults

KBKate S. BraniganKSKevin S. SarokaPCPaula Corradini

Key Points

  • This research aims to explore how electromagnetic field exposure affects working memory performance and associated neural activity.
  • Conducted a between-subjects design with ninety-eight healthy volunteers
  • Applied four EMF stimulation conditions: Theta-Burst, Theta-Gamma, 40 Hz gamma stimulation, and sham stimulation
  • Used WAIS-IV Digit Span tests to assess working memory performance
  • Monitored cortical activity using EEG measurements
  • Theta-Burst EMF reduced performance on the Digit Span Backward task
  • Increased high-alpha activity was observed in the left inferior frontal gyrus with Theta-Burst stimulation
  • Theta-Gamma EMF reduced performance on the Digit Span Forward task without EEG changes
  • Findings indicate that EMF effects are specific to frequency and pattern of stimulation

Abstract

Electromagnetic fields (EMFs) have been shown to modulate neural activity, yet their specific effects on memory, particularly the distinction between working memory and short-term recall, remain unresolved. This study examined whether patterned EMF exposure influences these domains, using the WAIS-IV Digit Span Forward (DSF) and Digit Span Backward (DSB) subtests. Ninety-eight healthy volunteers were randomly assigned, in a between-subjects design, to one of four conditions: Theta-Burst (five-pulse bursts at 100 Hz), Theta-Gamma (mimicking theta–gamma coupling in hippocampal networks), 40 Hz gamma stimulation, or sham stimulation. Fields were applied for 30 min in one of three spatial configurations: unilaterally over the left hemisphere, unilaterally over the right hemisphere, or bilaterally over the temporal lobes. Theta-Burst EMF reduced working memory performance on the DSB task and was accompanied by increased high-alpha (10–12 Hz) activity in the left inferior frontal gyrus and a whole-brain effect centered on the right superior frontal gyrus. In contrast, Theta-Gamma EMF reduced DSF performance without detectable EEG changes. These findings indicate that EMF effects on memory are frequency- and pattern-specific, selectively altering behavior and, in some cases, underlying neural activity. Optimizing stimulation parameters may allow such fields to be harnessed for cognitive enhancement or targeted neuromodulation.

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Cite This Study

Branigan et al. (2026) studied this question.

synapsesocial.com/papers/69a2877b0a974eb0d3c0343fhttps://doi.org/10.1038/s41598-026-42063-4
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