Quantitative MRI reveals differences in striatal myelin in children with DLD

Author:

Krishnan Saloni12ORCID,Cler Gabriel J13ORCID,Smith Harriet J14ORCID,Willis Hanna E15ORCID,Asaridou Salomi S1,Healy Máiréad P16ORCID,Papp Daniel78ORCID,Watkins Kate E1ORCID

Affiliation:

1. Wellcome Centre for Integrative Neuroimaging, Dept of Experimental Psychology, University of Oxford

2. Department of Psychology, Royal Holloway, University of London, Egham Hill

3. Department of Speech and Hearing Sciences, University of Washington

4. MRC Cognition and Brain Sciences Unit, University of Cambridge

5. Nuffield Department of Clinical Neurosciences, John Radcliffe Hospital

6. Department of Psychology, University of Cambridge

7. NeuroPoly Lab, Biomedical Engineering Department, Polytechnique Montreal

8. Wellcome Centre for Integrative Neuroimaging, FMRIB Centre, Nuffield Department of Clinical Neuroscience, University of Oxford

Abstract

Developmental language disorder (DLD) is a common neurodevelopmental disorder characterised by receptive or expressive language difficulties or both. While theoretical frameworks and empirical studies support the idea that there may be neural correlates of DLD in frontostriatal loops, findings are inconsistent across studies. Here, we use a novel semiquantitative imaging protocol – multi-parameter mapping (MPM) – to investigate microstructural neural differences in children with DLD. The MPM protocol allows us to reproducibly map specific indices of tissue microstructure. In 56 typically developing children and 33 children with DLD, we derived maps of (1) longitudinal relaxation rate R1 (1/T1), (2) transverse relaxation rate R2* (1/T2*), and (3) Magnetization Transfer saturation (MTsat). R1 and MTsat predominantly index myelin, while R2* is sensitive to iron content. Children with DLD showed reductions in MTsat values in the caudate nucleus bilaterally, as well as in the left ventral sensorimotor cortex and Heschl’s gyrus. They also had globally lower R1 values. No group differences were noted in R2* maps. Differences in MTsat and R1 were coincident in the caudate nucleus bilaterally. These findings support our hypothesis of corticostriatal abnormalities in DLD and indicate abnormal levels of myelin in the dorsal striatum in children with DLD.

Funder

UK Research and Innovation

Wellcome Trust

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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