认知灵活性
心理学
神经科学
兴奋性突触后电位
认知
执行职能
功能磁共振成像
抑制性突触后电位
默认模式网络
睡眠剥夺对认知功能的影响
灵活性(工程)
工作记忆
平衡(能力)
听力学
额叶
医学
统计
数学
作者
Geraldine Rodríguez‐Nieto,David F. Alvarez-Anacona,Dante Mantini,Richard A.E. Edden,Richard A.E. Edden,Stefan Sunaert,Stephan P. Swinnen
标识
DOI:10.1523/jneurosci.0355-24.2024
摘要
Cognitive flexibility represents the capacity to switch among different mental schemes, providing an adaptive advantage to a changing environment. The neural underpinnings of this executive function have been deeply studied in humans through fMRI, showing that the left inferior frontal cortex (IFC) and the left inferior parietal lobe (IPL) are crucial. Here, we investigated the inhibitory-excitatory balance in these regions by means of γ-aminobutyric acid (GABA+) and glutamate + glutamine (Glx), measured with magnetic resonance spectroscopy (MRS), during a cognitive flexibility task and its relationship with performance level and the local task-induced blood-oxygen level dependent (BOLD) response in 40 young (18-35 y.o.; 26 female) and 40 older (18-35 y.o.; 21 female) human adults. As the IFC and the IPL are richly connected regions, we also examined whole-brain effects associated with their local metabolic activity. Results did not show absolute metabolic modulations associated with flexibility performance, but performance level was related to the direction of metabolic modulation in the IPL with opposite patterns in young and older individuals. The individual inhibitory-excitatory balance modulation showed an inverse relationship with the local BOLD response in the IPL. Finally, the modulation of inhibitory-excitatory balance in IPL was related to whole-brain effects only in older individuals. These findings show disparities in the metabolic mechanisms underlying cognitive flexibility in young and older adults and their association with performance level and BOLD response. Such metabolic differences are likely to play a role in executive functioning during aging and specifically in cognitive flexibility.
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