TY - JOUR
T1 - Stimulant medications affect arousal and reward, not attention networks
AU - Kay, Benjamin P.
AU - Wheelock, Muriah D.
AU - Siegel, Joshua S.
AU - Raut, Ryan V.
AU - Chauvin, Roselyne J.
AU - Metoki, Athanasia
AU - Rajesh, Aishwarya
AU - Eck, Andrew
AU - Pollaro, Jim
AU - Wang, Anxu
AU - Suljic, Vahdeta
AU - Adeyemo, Babatunde
AU - Baden, Noah J.
AU - Scheidter, Kristen M.
AU - Monk, Julia S.
AU - Whiting, Forrest I.
AU - Ramirez-Perez, Nadeshka
AU - Krimmel, Samuel R.
AU - Shinohara, Russell T.
AU - Tervo-Clemmens, Brenden
AU - Hermosillo, Robert J.M.
AU - Nelson, Steven M.
AU - Hendrickson, Timothy J.
AU - Madison, Thomas
AU - Moore, Lucille A.
AU - Miranda-Domínguez, Óscar
AU - Randolph, Anita
AU - Feczko, Eric
AU - Roland, Jarod L.
AU - Nicol, Ginger E.
AU - Laumann, Timothy O.
AU - Marek, Scott
AU - Gordon, Evan M.
AU - Raichle, Marcus E.
AU - Barch, Deanna M.
AU - Fair, Damien A.
AU - Dosenbach, Nico U.F.
N1 - Publisher Copyright:
© 2025 The Author(s).
PY - 2025/12/24
Y1 - 2025/12/24
N2 - Prescription stimulants (e.g., methylphenidate) are thought to improve attention, but evidence from prior fMRI studies is conflicted. We utilized resting-state fMRI data from the Adolescent Brain Cognitive Development Study (n = 11,875; 8–11 years old) and validated the functional connectivity findings in a precision imaging drug trial with highly sampled (n = 5, 165–210 min each) healthy adults (methylphenidate 40 mg). Stimulant-related connectivity differences in sensorimotor regions matched fMRI patterns of daytime arousal, sleeping longer at night, and norepinephrine transporter expression. Taking stimulants reversed the effects of sleep deprivation on connectivity and school grades. Connectivity was also changed in salience and parietal memory networks, which are important for dopamine-mediated, reward-motivated learning, but not the brain’s attention systems (e.g., dorsal attention network). The combined noradrenergic and dopaminergic effects of stimulants may drive brain organization towards a more wakeful and rewarded configuration, improving task effort and persistence without effects on attention networks.
AB - Prescription stimulants (e.g., methylphenidate) are thought to improve attention, but evidence from prior fMRI studies is conflicted. We utilized resting-state fMRI data from the Adolescent Brain Cognitive Development Study (n = 11,875; 8–11 years old) and validated the functional connectivity findings in a precision imaging drug trial with highly sampled (n = 5, 165–210 min each) healthy adults (methylphenidate 40 mg). Stimulant-related connectivity differences in sensorimotor regions matched fMRI patterns of daytime arousal, sleeping longer at night, and norepinephrine transporter expression. Taking stimulants reversed the effects of sleep deprivation on connectivity and school grades. Connectivity was also changed in salience and parietal memory networks, which are important for dopamine-mediated, reward-motivated learning, but not the brain’s attention systems (e.g., dorsal attention network). The combined noradrenergic and dopaminergic effects of stimulants may drive brain organization towards a more wakeful and rewarded configuration, improving task effort and persistence without effects on attention networks.
KW - ADHD
KW - arousal
KW - brain networks
KW - brain-wide association studies
KW - fMRI
KW - functional connectivity
KW - methylphenidate
KW - resting state
KW - reward
KW - stimulants
UR - https://www.scopus.com/pages/publications/105025357669
U2 - 10.1016/j.cell.2025.11.039
DO - 10.1016/j.cell.2025.11.039
M3 - Article
C2 - 41448140
AN - SCOPUS:105025357669
SN - 0092-8674
VL - 188
SP - 7529-7546.e20
JO - Cell
JF - Cell
IS - 26
ER -