Transcranial focused ultrasound to the posterior cingulate cortex modulates default mode network and subjective experience: an fMRI pilot study.
Brian Lord, Joseph L Sanguinetti, Lisannette Ruiz, Vladimir Miskovic, Joel Segre, Shinzen Young, Maria E Fini, John J B Allen
Frontiers in human neuroscience January 1, 2024 DOI: 10.3389/fnhum.2024.1392199 via PubMed
Summary
AI-generated from the abstractTranscranial focused ultrasound (TFUS) aimed at the posterior cingulate cortex reduces functional connectivity along the midline of the default mode network (DMN) in healthy people. In a randomized, single-blind trial with 30 participants, those receiving active TFUS showed significant connectivity decreases and reported increased state mindfulness, reduced vigor, and temporary changes in sense of self, time, and memory recall. The sham group also showed increased mindfulness but no other subjective effects. TFUS can alter DMN connectivity and subjective experience, suggesting it may serve as a research tool and potential therapeutic intervention.
Study at a glance
| Characteristics | Randomized controlled trial Pilot study Peer reviewed |
|---|---|
| Sample size | 30 |
| Population | Healthy subjects |
| Intervention | Transcranial focused ultrasound (TFUS) |
| Duration | 30 min after sonication |
| Topics | Default mode network Meditation |
| Keywords | FMRI Neuromodulation Non-invasive brain stimulation |
| Citations | 28 |
| Key finding | TFUS targeted at the posterior cingulate cortex reduces DMN functional connectivity and alters subjective experience, including increased mindfulness and temporary changes in sense of self and time. |
Abstract
Transcranial focused ultrasound (TFUS) is an emerging neuromodulation tool for temporarily altering brain activity and probing network functioning. The effects of TFUS on the default mode network (DMN) are unknown. The study examined the effects of transcranial focused ultrasound (TFUS) on the functional connectivity of the default mode network (DMN), specifically by targeting the posterior cingulate cortex (PCC). Additionally, we investigated the subjective effects of TFUS on mood, mindfulness, and self-related processing. The study employed a randomized, single-blind design involving 30 healthy subjects. Participants were randomly assigned to either the active TFUS group or the sham TFUS group. Resting-state functional magnetic resonance imaging (rs-fMRI) scans were conducted before and after the TFUS application. To measure subjective effects, the Toronto Mindfulness Scale, the Visual Analog Mood Scale, and the Amsterdam Resting State Questionnaire were administered at baseline and 30 min after sonication. The Self Scale and an unstructured interview were also administered 30 min after sonication. The active TFUS group exhibited significant reductions in functional connectivity along the midline of the DMN, while the sham TFUS group showed no changes. The active TFUS group demonstrated increased state mindfulness, reduced Global Vigor, and temporary alterations in the sense of ego, sense of time, and recollection of memories. The sham TFUS group showed an increase in state mindfulness, too, with no other subjective effects. TFUS targeted at the PCC can alter DMN connectivity and cause changes in subjective experience. These findings support the potential of TFUS to serve both as a research tool and as a potential therapeutic intervention.