Transcranial focused ultrasound stimulation of the anterior temporal lobe enhances semantic memory by modulating brain morphology, neurochemistry and neural dynamics
Jung, J.; Atkinson-Clement, C.; Kaiser, M.; Ralph, M. A. L.
Show abstract
AbstractsUnderstanding neural functioning and plasticity of the brain is a fundamental goal of neuroscience. The ventromedial anterior temporal lobe (ATL) has been suggested as the centre-point of a core transmodal hub for semantic memory, playing a crucial role in the representation of coherent conceptual knowledge. However, non-invasive direct modulation of the ventromedial ATL has remained challenging. Transcranial ultrasound stimulation (TUS) is an emerging neuromodulatory technique that delivers acoustic energy with high spatial precision, making it uniquely suited for targeting deep brain structures non-invasively. In this study, we investigated whether theta-burst TUS (tbTUS) to the ventromedial ATL could enhance semantic memory performance in the adult brain. Using a multimodal neuroimaging approach-- magnetic resonance spectroscopy (MRS), functional MRI (fMRI), and voxel-based morphometry (VBM)--we assessed tbTUS-induced changes in neurochemical concentrations, functional network connectivity, structural plasticity, and semantic memory performance. Compared to control stimulation (ventricle), tbTUS at the ventromedial ATL significantly improved semantic task performance in healthy individuals. MRS analysis revealed that tbTUS decreased GABA and increased Glx levels, reflecting shifts in excitation-inhibition balance. Additionally, tbTUS increased neurometabolites in the ATL, including NAA, creatine and choline, suggesting enhanced neuronal function and metabolism. fMRI analysis demonstrated that tbTUS reduced task-induced regional activity in the ATL and functionally connected semantic regions, while also enhancing intrinsic and effective connectivity across the semantic network. Structural analysis revealed increased grey matter volume in the ATL following tbTUS compared to control stimulation. These findings provide the first convergent evidence that tbTUS can modulate neurochemistry, functional dynamics, and brain morphology to enhance semantic memory function. Our results highlight TUS as a powerful neuromodulatory tool with potential applications in cognitive enhancement and neurorehabilitation, offering a promising intervention for dementia and neurodegenerative disorders.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Somatosensory-evoked response induces extensive diffusivity and kurtosis changes associated with neural activity in rodents 96%
- Widespread, perception-related information in the human brain scales with levels of consciousness 95%
- Level Up the Brain! Novel PCA Method Reveals Key Neuroplastic Refinements in Action Video Gamers 94%
Similar papers in this journal
- tDCS modulates effective connectivity during motor command following; a potential therapeutic target for disorders of consciousness 96%
- Shared subcortical arousal systems across sensory modalities during transient modulation of attention 96%
- Glutamate-Weighted Magnetic Resonance Imaging (GluCEST) Detects Effects of Transcranial Magnetic Stimulation to the Motor Cortex 95%
Similar papers in this journal
- Lateral Prefrontal Theta Oscillations Causally Drive a Computational Mechanism Underlying Conflict Expectation and Adaptation 96%
- Propofol Disrupts the Functional Core-Matrix Architecture of the Thalamus in Humans 96%
- Integrating electric field modelling and neuroimaging to explain inter-individual variability of tACS effects 95%
Similar papers in this journal
- Prefrontal stimulation prior to motor sequence learning alters multivoxel patterns in the striatum and the hippocampus 96%
- Structural and functional features characterizing the brains of individuals with higher controllability of motor imagery 95%
- Temporal order of activations and interactions during arithmetic calculations measured by intracranial electrophysiological recordings in the human brain 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.