Cortical microstructure and hemispheric specialization—A diffusion‐imaging analysis in younger and older adults

Author:

Wróbel Paweł P.1ORCID,Braaß Hanna1ORCID,Frey Benedikt M.1,Bönstrup Marlene2,Guder Stephanie1ORCID,Frontzkowski Lukas K.1,Feldheim Jan F.1,Cheng Bastian1ORCID,Rathi Yogesh34,Pasternak Ofer34,Thomalla Götz1,Koerte Inga K.356,Shenton Martha E.346,Gerloff Christian1,Quandt Fanny1,Higgen Focko L.1ORCID,Schulz Robert1

Affiliation:

1. Department of Neurology University Medical Center Hamburg‐Eppendorf Hamburg Germany

2. Department of Neurology University Medical Center Leipzig Germany

3. Psychiatry Neuroimaging Laboratory, Brigham and Women's Hospital Harvard Medical School Boston Massachusetts USA

4. Department of Radiology, Brigham and Women's Hospital Harvard Medical School Boston Massachusetts USA

5. cBRAIN, Department of Child and Adolescent Psychiatry, Psychosomatics and Psychotherapy Ludwig‐Maximilians‐Universität Munich Germany

6. Department of Psychiatry, Massachusetts General Hospital Harvard Medical School Boston Massachusetts USA

Abstract

AbstractCharacterizing cortical plasticity becomes increasingly important for identifying compensatory mechanisms and structural reserve in the ageing population. While cortical thickness (CT) largely contributed to systems neuroscience, it incompletely informs about the underlying neuroplastic pathophysiology. In turn, microstructural characteristics may correspond to atrophy mechanisms in a more sensitive way. Fractional anisotropy, a diffusion tensor imaging (DTI) measure, is inversely related to cortical histologic complexity. Axial diffusivity and radial diffusivity are assumed to be linked to the density of structures oriented perpendicular and parallel to the cortical surface, respectively. We hypothesized (1) that cortical DTI will reveal microstructural correlates for hemispheric specialization, particularly in the language and motor systems, and (2) that lateralization of cortical DTI parameters will show an age effect, paralleling age‐related changes in activation, especially in the prefrontal cortex. We analysed data from healthy younger and older adult participants (N = 91). DTI and CT data were extracted from regions of the Destrieux atlas. Diffusion measures showed lateralization in specialized motor, language, visual, auditory and inferior parietal cortices. Age‐dependent increased lateralization for DTI measures was observed in the prefrontal, angular, superior temporal and lateral occipital cortex. CT did not show any age‐dependent alterations in lateralization. Our observations argue that cortical DTI can capture microstructural properties associated with functional specialization, resembling findings from histology. Age effects on diffusion measures in the integrative prefrontal and parietal areas may shed novel light on the atrophy‐related plasticity in healthy ageing.

Funder

Deutsche Forschungsgemeinschaft

National Natural Science Foundation of China

Werner Otto Stiftung

Else Kröner-Fresenius-Stiftung

Publisher

Wiley

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