Non-invasive ultrasonic neuromodulation of the human nucleus accumbens impacts reward sensitivity.

Yaakub SN
Bault N
Lojkiewiez M
Bellec E
Roberts J
Philip NS
Divanbeighi Zand AP
Green AL
Rushworth MFS
Fouragnan EF
Scientific Abstract

Precisely neuromodulating deep brain regions could bring transformative advancements in both neuroscience and treatment. We demonstrate that non-invasive transcranial ultrasound stimulation (TUS) can selectively modulate deep brain activity and affect learning and decision making, comparable to deep brain stimulation (DBS). We tested whether TUS could causally influence neural and behavioural responses by targeting the nucleus accumbens (NAcc) using a reinforcement learning task. Twenty-six healthy adults completed a within-subject TUS-fMRI experiment with three conditions: TUS to the NAcc, dorsal anterior cingulate cortex (dACC), or Sham. After TUS, participants performed a probabilistic learning task during fMRI. TUS-NAcc altered BOLD responses to reward expectation in the NAcc and surrounding areas. It also affected reward-related behaviours, including win-stay strategy use, learning rate following rewards, learning curves, and repetition rates of rewarded choices. DBS-NAcc perturbed the same features, confirming target engagement. These findings establish TUS as a viable approach for non-invasive deep-brain neuromodulation.

Citation

2025. Nat Commun, 16(1):10192.

DOI
10.1038/s41467-025-65080-9
Related Content
Paper
Author
Torrecillos F
Capone F
Ricciuti R
Di Lazzaro V
Marano M

2022. Brain Stimul, 15(6):1513-1516.

Paper
Author
Zénon A
Duclos Y
Carron R
Witjas T
Baunez C
Régis J
Azulay JP
Eusebio A
2016. Brain, 139(Pt 6):1830-43.
Paper
Author
Martin E
Roberts M
Wright O
Nandi T
Rieger SW
Campbell J
den Boer T
Cox BT
Treeby BE
Nat Commun 16, 8024 (2025)
Paper
Author
Baaske MK
Kormann E
Holt AB
Gulberti A
Pötter-Nerger M
Westphal M
Engel AK
Hamel W
Moll CK
2020. Neurobiol. Dis., 146:105119.