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Lommers, E.

Publications and source records attributed to Lommers, E..

2 recordsLinked to original sources

Pooling quantitative MRI data: A multi-protocol study of healthy subcortical ageing

Quantitative MRI (qMRI) measures relaxation rates, exchange rates and proton densities that reflect biophysical properties of tissue and are ideally free from protocol- and scanner-dependence. In practice, qMRI has not yet achieved this level of independence from sequence and hardware choice, and quantitative estimates often differ across sites and acquisition schemes. At the same time pooling data across different sources can be beneficial to statistical power of longitudinal, cross-sectional or case-control studies. Here we investigate how protocol and hardware differences can affect pooling data from different sources in large ultra high field (UHF) qMRI studies in the context of healthy aging. We combine the openly available ageing UHF qMRI MP2RAGEME-based dataset with two different MPM-based sets of qMRI data. We evaluate how pooling affects age dependence of qMRI parameters and investigate protocol-related biases, with a particular focus on subcortical structures. We focus the analysis, first, on replication and expansion of the reference qMRI dataset on normative aging, second, the examination of the protocol influence on the estimated qMRI values, and third, on detecting the protocol effect on the age dependence inferred from the data. We find that the age-related changes for R1 measure around 4-17% of the lifespan mean in different structures. Similarly, age-related R2* variation in different structures constitutes around 6-30%. Subcortical structure volume change is on the order of 5-27%. We further observe larger relative difference between protocols for R1 and volume, while R2* remains more consistent for most regions. We show how pooling the UHF qMRI data from different sites and collected with different quantitative protocols can be both detrimental and beneficial for the analysis outcomes.

neuroscience↗

The specificity of fatigue cerebral substrates in early Multiple Sclerosis - An fMRI study

ContextThe cerebral substrates of fatigue in patients with Multiple Sclerosis (pwMS) are not elucidated yet. This study aims at exploring the disease-specific functional brain substrates of fatigue in pwMS with a recent disease history MethodsSixteen pwMS (disease history < 5 years) and 17 matched Healthy Controls (HC) performed a N-Back task with three difficulty levels during fMRI acquisitions following high vs. low fatigue induction. Measures of subjective trait and state fatigue were also recorded. Behavioral performance at n-back task and evolution of subjective fatigue states were analyzed by means of Bayesian repeated measures analyses of variance. Functional MRI data were analyzed to determine between-group differences (1) in task-related brain activity, independently of trait fatigue score; (2) in the association between trait fatigue and brain activity ResultsA similar trajectory was observed in the two groups for subjective and task-related measures following fatigue induction. No between-group difference was observed in brain activity unrelated to fatigue score. However, negative associations between trait fatigue score and brain activity were observed in pwMS, while the associations are positive in HC. Specifically, interactions between group and task difficulty were observed in regions belonging to the Striato-Thalamo-Cortical (STC) network and the fronto-parietal cortex ConclusionGroup-specific patterns of brain activity related to fatigue were identified in pwMS and HC in the STC circuitry, despite similar behavioral performance and subjective fatigue level. This confirms the implication of the STC loops in fatigue pathophysiology, occurring from the early stages of the disease.

neuroscience↗