Prefrontal GABA and glutamate–glutamine levels affect sustained attention

Author:

Kondo Hirohito M12ORCID,Terashima Hiroki3ORCID,Kihara Ken4,Kochiyama Takanori5,Shimada Yasuhiro5,Kawahara Jun I6

Affiliation:

1. Department of Psychology , School of Psychology, , Nagoya, Aichi 466-8666 , Japan

2. Chukyo University , School of Psychology, , Nagoya, Aichi 466-8666 , Japan

3. Human Information Science Laboratory, NTT Communication Science Laboratories, NTT Corporation , Atsugi, Kanagawa 243-0198 , Japan

4. Department of Information Technology and Human Factors, National Institute of Advanced Industrial Science and Technology (AIST) , Tsukuba, Ibaraki 305-8566 , Japan

5. Brain Activity Imaging Center, ATR-Promotions, Seika-cho , Kyoto 619-0288 , Japan

6. Department of Psychology, Hokkaido University , Sapporo, Hokkaido 060-0810 , Japan

Abstract

Abstract Attention levels fluctuate during the course of daily activities. However, factors underlying sustained attention are still unknown. We investigated mechanisms of sustained attention using psychological, neuroimaging, and neurochemical approaches. Participants were scanned with functional magnetic resonance imaging (fMRI) while performing gradual-onset, continuous performance tasks (gradCPTs). In gradCPTs, narrations or visual scenes gradually changed from one to the next. Participants pressed a button for frequent Go trials as quickly as possible and withheld responses to infrequent No-go trials. Performance was better for the visual gradCPT than for the auditory gradCPT, but the 2 were correlated. The dorsal attention network was activated during intermittent responses, regardless of sensory modality. Reaction-time variability of gradCPTs was correlated with signal changes (SCs) in the left fronto-parietal regions. We also used magnetic resonance spectroscopy (MRS) to measure levels of glutamate–glutamine (Glx) and γ-aminobutyric acid (GABA) in the left prefrontal cortex (PFC). Glx levels were associated with performance under undemanding situations, whereas GABA levels were related to performance under demanding situations. Combined fMRI–MRS results demonstrated that SCs of the left PFC were positively correlated with neurometabolite levels. These findings suggest that a neural balance between excitation and inhibition is involved in attentional fluctuations and brain dynamics.

Funder

Japan Society for the Promotion of Science

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

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