The future of transcranial ultrasound as a precision brain interface

K Murphy, E Fouragnan - PLoS biology, 2024 - journals.plos.org
Our understanding of brain circuit operations and disorders has rapidly outpaced our ability
to intervene and restore them. Develo** technologies that can precisely interface with any …

Non-invasive Ultrasound Deep Neuromodulation of the Human Nucleus Accumbens Increases Win-Stay Behaviour

SN Yaakub, N Bault, M Lojkiewiez, E Bellec, J Roberts… - bioRxiv, 2024 - biorxiv.org
Current methods for directly modulating activity in deep human brain structures are limited
and invasive. Here, we demonstrate modulation of activity in human deep brain structures …

Selective sub-nucleus ultrasound stimulation induces synaptic potentiation in the mouse hippocampus

W Zhou, P Li, W Meng, SH Zheng… - IEEE Transactions …, 2025 - ieeexplore.ieee.org
Ultrasound neuromodulation enables to elicit long-lasting effect on neural activities and
behavioral responses across species, including humans. However, the potential biophysical …

[HTML][HTML] Delay-and Pressure-Dependent Neuromodulatory Effects of Transcranial Ultrasound Stimulation

C Atkinson-Clement, M Alkhawashki, M Gatica… - … : Technology at the …, 2025 - Elsevier
Objective Despite the growing interest in transcranial focused ultrasound stimulation (TUS),
our understanding of its underlying mechanisms remains limited. In this study, we aimed to …

Neuromodulation with Ultrasound: Hypotheses on the Directionality of Effects and a Community Resource

H Caffaratti, B Slater, N Shaheen, A Rhone… - medRxiv, 2024 - pmc.ncbi.nlm.nih.gov
Low-intensity Transcranial Ultrasound Stimulation (TUS) is a promising non-invasive
technique for deep-brain stimulation and focal neuromodulation. Research with animal …