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Updated: Jun 13, 2026

Reducing State Anxiety Using Working Memory Maintenance
Published on: July 19, 2017
Focused Ultrasound Neuromodulation of Salience Network Hubs Selectively Enhances Anxiety-Relevant Autonomic
Jennifer Legon1, Yunruo Ni2, Wynn Legon1,2,3,4,5,6
1Fralin Biomedical Research Institute at Virginia Tech Carilion, Roanoke, Virginia.
Background:
Anxiety involves heightened vigilance and sustained anticipatory responding that may reflect impaired sensory habituation. Disrupted sensory filtering may bias monitoring toward threat, thereby promoting persistent autonomic and defensive responses.
Methods:
We examined associations between state and trait anxiety and acoustic startle habituation across somatic (electromyogram [EMG]), cortical (electroencephalogram [EEG]), and autonomic (electrodermal response [EDR]) measures and tested whether modulation of the right anterior insula (AI) or anterior midcingulate cortex (aMCC) with low-intensity focused ultrasound (LIFU) alters these dynamics. Forty healthy participants (median State-Trait Anxiety Inventory-Trait score = 39.5, range = 25-68) completed 3 sessions (AI, aMCC, sham) during which EMG, EEG, and EDR were recorded during 12 acoustic startle trials before and after LIFU. Habituation slopes were computed separately for early (trials 2-6) and late (trials 7-12) phases and analyzed with linear mixed-effects models controlling for baseline magnitude and anxiety covariates.
Results:
Before LIFU, higher trait anxiety predicted weaker EMG habituation (ρ ≈ 0.3), whereas state anxiety was unrelated to habituation in any modality. Early slopes were steeper than late slopes across measures, indicating reduced adaptation over repeated trials. LIFU to the AI or aMCC did not alter EMG or EEG habituation but enhanced early-phase EDR habituation relative to sham, indicating transient autonomic facilitation. EMG and EEG habituation were correlated (ρ ≈ 0.4-0.5, p < .01), independent of anxiety, whereas EDR habituation varied independently.
Conclusions:
Coordinated cortical-somatic habituation may represent an anxiety-relevant biomarker, while AI and aMCC neuromodulation selectively facilitates autonomic adaptation.

