Dyslexia and age related effects in the neurometabolites concentration in the visual and temporo-parietal cortex.

Bartosz Kossowski, Katarzyna Chyl, Agnieszka Kacprzak, Piotr Bogorodzki, Katarzyna Jednoróg

Journal: Scientific reports 2020;9(1):5096

PMID: 30911032

Abstract

Several etiological theories, in particular neuronal noise and impaired auditory sampling, predicted neurotransmission deficits in dyslexia. Neurometabolites also affect white matter microstructure, where abnormalities were previously reported in dyslexia. However findings from only few magnetic resonance spectroscopy studies using diverse age groups, different brain regions, data processing and reference scaling are inconsistent. We used MEGA-PRESS single-voxel spectroscopy in two ROIs: left temporo-parietal and occipital cortex in 36 adults and 52 children, where half in each group had dyslexia. Dyslexics, on average, had significantly lower total N-acetylaspartate (tNAA) than controls in the occipital cortex. Adults compared to children were characterized by higher choline and creatine in both areas, higher tNAA in left temporo-parietal and lower glutamate in the visual cortex, reflecting maturational changes in cortical microstructure and metabolism. Although the current findings do not support the proposed etiological theories of dyslexia, they show, for the first time, that tNAA, considered to be a neurochemical correlate of white matter integrity, is deficient in the visual cortex in both children and adults with dyslexia. They also point that several neurotransmitters, including ones previously used as reference, change with age.

Address: Faculty of Electronics and Information Technology Warsaw University of Technology, Nowowiejska 15/19, 00-665, Warsaw, Poland. [email protected].; Laboratory of Brain Imaging, Nencki Institute of Experimental Biology of Polish Academy of Sciences, 3 Pasteur Str., 02-093, Warsaw, Poland. [email protected].; Laboratory of Language Neurobiology, Nencki Institute of Experimental Biology of Polish Academy of Sciences, 3 Pasteur Str., 02-093, Warsaw, Poland.; Faculty of Psychology, University of Warsaw, Stawki 5/7, 00-183, Warsaw, Poland.; Faculty of Electronics and Information Technology Warsaw University of Technology, Nowowiejska 15/19, 00-665, Warsaw, Poland.; Laboratory of Language Neurobiology, Nencki Institute of Experimental Biology of Polish Academy of Sciences, 3 Pasteur Str., 02-093, Warsaw, Poland. [email protected].
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