Ventral striatum temporal interference brain stimulation enhances the reward positivity event-related potential and reduces anxiety.
Jonathan S Ryan, Timothy J Mcdermott, Boris Botzanowski, Jessica R Kubert, Samantha A Betters, Aje Oluwagbohunmi, Summer B Frandsen, Travis M Fulton, Adam Williamson, Michael T. Treadway, Negar Fani
Research Square February 9, 2026 DOI: 10.21203/rs.3.rs-8767480/v1 (opens in new tab) via PubMed
Summary
AI-generated from the abstractTemporal interference (TI) electrical stimulation can target the ventral striatum (VS) during breath-focused mindfulness meditation to alter reward processing and emotionality. In 19 healthy adults aged 18–36, active 8 Hz TI stimulation, compared to sham, increased the reward positivity potential (RewP) in EEG recordings during a reward task, indicating engagement of the VS. The effect was specific to reward processing, not an unrelated brain response. Active TI also reduced negative emotionality, and these emotional changes corresponded with increased RewP amplitude. The findings suggest TI can precisely target deep brain structures and produce short-term continued effects on reward-related functioning when combined with meditation.
Study at a glance
| Characteristics | Within-subjects crossover trial Peer reviewed |
|---|---|
| Sample size | 19 |
| Population | Healthy adults aged 18-36 |
| Intervention | Breath-focused mindfulness meditation |
| Duration | Two stimulation sessions |
| Topics | Anxiety |
| Keywords | Deep brain stimulation Electroencephalography Reward Striatum |
| Key finding | Active 8 Hz TI stimulation during meditation increased the reward positivity potential and reduced negative emotionality compared to sham. |
Abstract
Temporal interference (TI) electrical stimulation is a novel neuromodulation method that can target deep brain structures to enhance the impact of behavioral techniques. We tested the feasibility of TI in targeting the ventral striatum (VS) in concert with an emotion regulation practice (breath-focused mindfulness meditation). As an assay of target engagement, we used electroencephalography (EEG) to measure amplitude of the reward positivity potential (RewP), an event-related potential ERP associated with VS function. Nineteen healthy adults (age range: 18-36 years) received an MRI scan and two stimulation sessions during meditation: one active 8 Hz TI stimulation and one 0 Hz sham TI. Before and after meditation, they completed a reward task during EEG recording. A significant time by stimulation type effect was observed with the RewP win-loss difference (p<.001; η p 2 = .61), but not an unrelated ERP, the Cue-N200 (p=.93). Active TI, but not sham, led to a RewP increase to win trials from pre- to post-stimulation, with evidence of a sustained RewP win amplitude increase at visit 2 in participants who received active TI at visit 1 (p < .001). Decreased negative emotionality was observed for active TI; emotion changes corresponded with increased RewP amplitude to win trials for only active TI. Findings show support for TI targeting of VS in conjunction with meditation to elicit self-reported and neural change in emotion-regulation and reward processing. Although replication is warranted, our data indicate the precision and short-term continued effects of TI on the VS and reward-related functioning.