神经科学
失配负性
小胶质细胞
精神分裂症(面向对象编程)
心理学
背景(考古学)
大脑发育
生物标志物
精神病
负效应
认知
情感(语言学)
疾病
中枢神经系统
光刺激
默认模式网络
发展心理学
亚临床感染
神经影像学
大脑定位
神经认知
突触修剪
脆弱性(计算)
功能磁共振成像
脑电图
大脑活动与冥想
医学
电生理学
作者
Anna M Rader Groves,David A. Ricci,Joseph A. Wargo,Valentina I. Florisel,Hana S. Dalwai,Antanovia Ferrell,Bhoomi Desai,Jordan M. Ross,Connor G. Gallimore,Chloe L. West,Georgia Bastos,Jessica L. Bolton,Fumiyasu Imai,Jordan P. Hamm
标识
DOI:10.1038/s41386-026-02547-3
摘要
Higher brain functions and cognition undergo extensive development during adolescence, when psychiatric disorders such as schizophrenia typically onset. Understanding how developmental processes during adolescence interact with schizophrenia pathophysiology and risk remains a central goal in psychiatry. Here we focus on mismatch negativity, a well-established biomarker of schizophrenia, and show that a key component of mismatch negativity, "deviance detection", emerges during adolescence in mouse primary visual cortex, along with a refinement of fronto-visual functional connectivity. In contrast, we found stimulus-specific adaptation-another component of mismatch negativity-to be present prior to adolescence. Because microglia are implicated in schizophrenia risk and disease states, we further investigated what role microglia may play in the development of mismatch responses under physiological conditions. We found that microglial depletion with PLX5622 in adolescence arrests the development of resting oscillations in frontal areas, but does not affect the development of deviance detection, other signatures of visual context processing, or prefrontal-visual functional connectivity. Our findings suggest (a) a key component of mismatch negativity develops in adolescence, a period of vulnerability to schizophrenia, and (b) the development underlying this component does not require robust microglia activity, clarifying the developmental role of microglia in higher-order visual processing.
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