GABA-ergic inhibition in human hMT+ predicts visuo-spatial intelligence mediated through the frontal cortex

Author:

Gao Yuan1,Cai Yong-Chun2,Liu Dong-Yu13,Yu Juan13,Wang Jue1,Li Ming4,Xu Bin1,Wang Teng-Fei2ORCID,Chen Gang3,Northoff Georg5,Bai Ruiliang36,Song Xue Mei13ORCID

Affiliation:

1. 7T Imaging Research Center in Second Affiliated Hospital, Interdisciplinary Institute of Neuroscience and Technology, Zhejiang University School of Medicine

2. Department of Psychology and Behavioral Sciences, Zhejiang University

3. Key Laboratory of Biomedical Engineering of Ministry of Education, Qiushi Academy for Advanced Studies, College of Biomedical Engineering and Instrument Science, Zhejiang University

4. College of Intelligence Science and Technology, National University of Defense Technology

5. University of Ottawa Institute of Mental Health Research, University of Ottawa

6. MOE Frontier Science Center for Brain Science & Brain- Machine Integration, Zhejiang University

Abstract

The prevailing opinion emphasizes fronto-parietal network (FPN) is key in mediating general fluid intelligence (gF). Meanwhile, recent studies show that human MT complex (hMT+), located at the occipito-temporal border and involved in 3D perception processing, also plays a key role in gF. However, the underlying mechanism is not clear, yet. To investigate this issue, our study targets visuo-spatial intelligence, which is considered to have high loading on gF. We use ultra-high field magnetic resonance spectroscopy (MRS) to measure GABA/glutamate concentrations in hMT+ combining resting-state fMRI functional connectivity (FC), behavioral examinations including hMT+ perception suppression test and gF subtest in visuo- spatial component. Our findings show that both GABA in hMT+ and frontal-hMT+ functional connectivity significantly correlate with the performance of visuo-spatial intelligence. Further, serial mediation model demonstrates that the effect of hMT+ GABA on visuo-spatial g F is fully mediated by the hMT+ frontal FC. Together our findings highlight the importance in integrating sensory and frontal cortices in mediating the visuospatial component of general fluid intelligence.

Publisher

eLife Sciences Publications, Ltd

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