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T2 heterogeneity as an in vivo marker of microstructural integrity in medial temporal lobe subfields in ageing and mild cognitive impairment

Wearn, Alfie R.; Nurdal, Volkan; Saunders-Jennings, Esther; Knight, Michael J.; Madan, Christopher R.; Fallon, Sean-James; Isotalus, Hanna K.; Kauppinen, Risto A.; Coulthard, Elizabeth J.

T2 heterogeneity as an in vivo marker of microstructural integrity in medial temporal lobe subfields in ageing and mild cognitive impairment Thumbnail


Authors

Alfie R. Wearn

Volkan Nurdal

Esther Saunders-Jennings

Michael J. Knight

Sean-James Fallon

Hanna K. Isotalus

Risto A. Kauppinen

Elizabeth J. Coulthard



Abstract

A better understanding of early brain changes that precede loss of independence in diseases like Alzheimer's disease (AD) is critical for development of disease-modifying therapies. Quantitative MRI, such as T2 relaxometry, can identify microstructural changes relevant to early stages of pathology. Recent evidence suggests heterogeneity of T2 may be a more informative MRI measure of early pathology than absolute T2. Here we test whether T2 markers of brain integrity precede the volume changes we know are present in established AD and whether such changes are most marked in medial temporal lobe (MTL) subfields known to be most affected early in AD. We show that T2 heterogeneity was greater in people with mild cognitive impairment (MCI; n = 49) compared to healthy older controls (n = 99) in all MTL subfields, but this increase was greatest in MTL cortices, and smallest in dentate gyrus. This reflects the spatio-temporal progression of neurodegeneration in AD. T2 heterogeneity in CA1-3 and entorhinal cortex and volume of entorhinal cortex showed some ability to predict cognitive decline, where absolute T2 could not, however further studies are required to verify this result. Increases in T2 heterogeneity in MTL cortices may reflect localised pathological change and may present as one of the earliest detectible brain changes prior to atrophy. Finally, we describe a mechanism by which memory, as measured by accuracy and reaction time on a paired associate learning task, deteriorates with age. Age-related memory deficits were explained in part by lower subfield volumes, which in turn were directly associated with greater T2 heterogeneity. We propose that tissue with high T2 heterogeneity represents extant tissue at risk of permanent damage but with the potential for therapeutic rescue. This has implications for early detection of neurodegenerative diseases and the study of brain-behaviour relationships.

Citation

Wearn, A. R., Nurdal, V., Saunders-Jennings, E., Knight, M. J., Madan, C. R., Fallon, S., …Coulthard, E. J. (2021). T2 heterogeneity as an in vivo marker of microstructural integrity in medial temporal lobe subfields in ageing and mild cognitive impairment. NeuroImage, 238, Article 118214. https://doi.org/10.1016/j.neuroimage.2021.118214

Journal Article Type Article
Acceptance Date May 25, 2021
Online Publication Date Jun 9, 2021
Publication Date 2021-09
Deposit Date Jun 11, 2021
Publicly Available Date Jun 25, 2021
Journal NeuroImage
Print ISSN 1053-8119
Electronic ISSN 1095-9572
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 238
Article Number 118214
DOI https://doi.org/10.1016/j.neuroimage.2021.118214
Keywords Cognitive Neuroscience; Neurology
Public URL https://nottingham-repository.worktribe.com/output/5655035
Publisher URL https://www.sciencedirect.com/science/article/pii/S1053811921004912?via%3Dihub

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