Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Excitation/inhibition imbalance and conversion to psychosis in the clinical high risk syndrome: Biophysical modeling finds reduced pyramidal cell excitability across EEG paradigms

作者:Julia Rodriguez-Sanchez, Daniel J. Hauke, Dimitris A. Pinotsis, Lioba C S Berndt, Hope Oloye, Spero Nicholas, Holly Hamilton, Brian J. Roach, Peter Bachman, Ayşenil Belger, Ricardo E. Carrión, Erica Duncan, Jason Johannesen, Gregory A. Light, Margaret Niznikiewicz, Karl Friston, Jean Addington, Carrie E. Bearden, Kristin S. Cadenhead, Diana O. Perkins, Elaine F. Walker, Scott W. Woods, Tyrone D. Cannon, Rick A. Adams, Daniel H. Mathalon · 发表于:medRxiv · 年份:2025 · DOI:10.1101/2025.09.16.25335778 · 被引用次数:1 · 研究领域:Neuroscience and Music Perception、Neural dynamics and brain function、Schizophrenia research and treatment

BACKGROUND: Reduced mismatch negativity (MMN) and P300 event-related potential (ERP) components are widely replicated in schizophrenia and are also observed in individuals at clinical high risk for psychosis (CHR-P) who subsequently convert to psychosis. It is unknown whether they reflect changes in excitatory and/or inhibitory synaptic function-both implicated in schizophrenia and considered potential drug targets. METHODS: We analyzed baseline MMN and P300 ERPs from the North American Prodrome Longitudinal Study (NAPLS 2) and asked whether altered synaptic excitation, inhibition, or both could explain amplitude reductions in CHR-P (n = 583). CHR-P participants who converted to psychosis (CHR-converters; n = 77) or remitted by the 24-month follow-up (CHR-remitters; n = 94) were compared on MMN evoked by pitch + duration double-deviant tones and P300 elicited by target tones from passive and active auditory oddball paradigms, respectively. Biophysical modeling was used to infer (excitatory) pyramidal cell and (inhibitory) interneuron function from both MMN and P300 ERPs. RESULTS: MMN and P300 amplitude reductions in future CHR-converters relative to CHR-remitters were best explained by reduced pyramidal cell excitability (posterior probability P > 0.95 of a group-by-condition interaction effect). In simulations, reduced pyramidal cell excitability suppressed deviant and target ERPs. Within CHR-converters, more severe positive symptoms were associated with disinhibition of pyr...