Electrophysiological Brain Connectivity and Subjective States Evoked by Electrical Stimulation of the Human Mid-thalamus.
Sofia Pantis, Masaya Togo, Dian Lyu, Weichen Huang, Julian Quabs, Heejung Jung, Eric Van Staalduinen, Lindsay Liu Yang, Aidan Chan, Mina Fedor, Robert Fisher, Vivek Buch, Josef Parvizi
The Journal of neuroscience : the official journal of the Society for Neuroscience June 3, 2026 DOI: 10.1523/jneurosci.2100-25.2026 via PubMed
Summary
AI-generated from the abstractDirect electrical stimulation of the mid-thalamus, near the mediodorsal nucleus, alters conscious experience and reveals asymmetric brain connectivity. In 30 patients with focal epilepsy, 50 Hz stimulation changed conscious experience in 11 of 12 patients, producing visceral, emotional, or somatosensory sensations, often unpleasant. Single-pulse 0.5 Hz stimulation showed strong electrophysiological connectivity between the mid-thalamus and the insula, anterior and midcingulate, prefrontal cortices, and medial temporal lobe. Inflow signals from some cortical sites to the mid-thalamus were significantly stronger than outflow, indicating a clear directional asymmetry in thalamocortical connectivity.
Study at a glance
| Characteristics | Observational cohort Peer reviewed |
|---|---|
| Sample size | 30 |
| Population | Patients with focal epilepsy |
| Intervention | intracranial electrical stimulation (iES) |
| Dose | 50 Hz stimulations (iESHF) and 0.5 Hz stimulations (iESLF) |
| Keywords | Seeg Corticothalamic connectivity Intracranial electrical stimulation Mediodorsal thalamus Stereoelectroencephalography |
| Key finding | Stimulation of the human mid-thalamus modulates conscious experience and reveals asymmetric electrophysiological connectivity between the thalamus and cerebral cortex. |
Abstract
Recent developments in intracranial EEG allow direct recordings from the human thalamus, offering new insight into thalamocortical relationships in the human brain. In this study, we applied direct intracranial electrical stimulation (iES) to the mid-thalamus, within or close to the mediodorsal nucleus, to examine its impact on conscious experience and causal brain connectivity in 30 patients with focal epilepsy (10 females, 128 sites; 4 ± 1 sites per patient). Applying 50 Hz stimulations (iESHF) in the mid-thalamus region elicited changes in conscious experience in 11 of 12 patients (39 sites; 83 stimulations across 27 unique pairs), predominantly in the visceral, emotional, or somatosensory domains and often described as unpleasant without any seemingly obvious lateralization effect. Our connectivity analyses based on single-pulse 0.5 Hz stimulations (iESLF), at the individual brain level, revealed strong electrophysiological connectivity between the mid-thalamus and the insula, anterior and midcingulate, and the other prefrontal cortices and medial temporal lobe structures. Notably, inflow signals from some of the sites to the mid-thalamus were significantly stronger than those in the reverse direction, indicating clear asymmetry in connectivity. These findings demonstrate that stimulation of the human thalamus modulates conscious experience and reveal an asymmetric electrophysiological relationship between the thalamus and human cerebral cortex.