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反复抑制使心智模板精细化,以优化感知决策。

Recurrent inhibition refines mental templates to optimize perceptual decisions.

机构信息

Affiliated Mental Health Center and Hangzhou Seventh People's Hospital, Zhejiang University School of Medicine, Hangzhou 310013, China.

Liangzhu Laboratory, MOE Frontier Science Center for Brain Science and Brain-machine Integration, State Key Laboratory of Brain-machine Intelligence, Zhejiang University, Hangzhou 311121, China.

出版信息

Sci Adv. 2024 Aug 2;10(31):eado7378. doi: 10.1126/sciadv.ado7378. Epub 2024 Jul 31.

Abstract

Translating sensory inputs to perceptual decisions relies on building internal representations of features critical for solving complex tasks. Yet, we still lack a mechanistic account of how the brain forms these mental templates of task-relevant features to optimize decision-making. Here, we provide evidence for recurrent inhibition: an experience-dependent plasticity mechanism that refines mental templates by enhancing γ-aminobutyric acid (GABA)-mediated (GABAergic) inhibition and recurrent processing in superficial visual cortex layers. We combine ultrahigh-field (7 T) functional magnetic resonance imaging at submillimeter resolution with magnetic resonance spectroscopy to investigate the fine-scale functional and neurochemical plasticity mechanisms for optimized perceptual decisions. We demonstrate that GABAergic inhibition increases following training on a visual (i.e., fine orientation) discrimination task, enhancing the discriminability of orientation representations in superficial visual cortex layers that are known to support recurrent processing. Modeling functional and neurochemical plasticity interactions reveals that recurrent inhibitory processing optimizes brain computations for perpetual decisions and adaptive behavior.

摘要

将感觉输入转化为知觉决策依赖于构建对解决复杂任务至关重要的特征的内部表示。然而,我们仍然缺乏一种机制解释大脑如何形成这些与任务相关的特征的心理模板,以优化决策。在这里,我们提供了关于 反复抑制的证据:一种经验依赖性的可塑性机制,通过增强γ-氨基丁酸(GABA)介导的(GABAergic)抑制和浅层视觉皮层中的反复处理来完善心理模板。我们将亚毫米分辨率的超高场(7T)功能磁共振成像与磁共振波谱相结合,研究了优化知觉决策的精细功能和神经化学可塑性机制。我们证明,在进行视觉(即精细方向)辨别任务的训练后,GABA 能抑制会增加,从而提高已知支持反复处理的浅层视觉皮层中方向表示的可辨别性。对功能和神经化学可塑性相互作用的建模表明,反复抑制处理优化了大脑对永久性决策和适应性行为的计算。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/401a/11290482/37fa77032411/sciadv.ado7378-f1.jpg

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