The study revealed structural brain abnormalities in aMCI, characterized by reduced hippocampal and hippocampal subfield volumes, as well as amygdala volume reduction, while other subcortical structures were relatively preserved.
Abstract
Objective. To identify the structural features of the brain in patients with amnestic mild cognitive impairment (aMCI) compared to healthy individuals, as well as to detect structural markers of progression to dementia in aMCI subgroups with different clinical outcomes. Materials and Methods. 41 patients with aMCI (mean age 71.5{+/-}9.5 years, 33 females) who underwent clinical assessment during 1 year follow-up, and 38 healthy controls (mean age 63.7{+/-}11.7 years, 28 females) were included. MRI scans were acquired, and the cortical thickness in both hemispheres, as well as the volumes of subcortical structures and hippocampal subfields, were analyzed. Results. Patients with aMCI as a whole, as well as aMCI subgroups with different clinical outcomes, showed significantly smaller bilateral hippocampal volumes and volumes of several hippocampal subfields than healthy controls. In addition, patients who were subsequently diagnosed with Alzheimer's disease dementia exhibited lower cortical gray matter thickness and smaller bilateral amygdala volumes than the healthy controls. Several subcortical structures and hippocampal subregions remained preserved in patients with aMCI, including those with unfavorable clinical outcomes. Conclusion. The study revealed structural brain abnormalities in aMCI, characterized by reduced hippocampal and hippocampal subfield volumes, as well as amygdala volume reduction, while other subcortical structures were relatively preserved. Furthermore, reduced cortical gray matter thickness may serve as a potential prognostic marker for conversion to dementia in patients with aMCI.
Cognitive and CSF phenotype of LO-TLE with normal CSF AD biomarkers is characterized by distinct cognitive and biological features compared with MCI-AD, suggesting a disease process independent of AD.
Alessia Casarini, Alice Ballerini, Riccardo Maramotti et al.· Neurology· 0 citations
SOMI’s risk profile in A4 was similar to prior findings in observational cohorts, and provides a low-cost, non-invasive enrichment tool for identifying individuals at risk for early cognitive decline in secondary prevention trials.
Priyanka Kumari, R. Lipton, A. Aschenbrenner et al.· The journal of prevention of...· 0 citations
Objective: Type 1 diabetes is related to an increased risk of structural brain alterations, cerebral microbleeds (CMBs), and cognitive deficits. We explored brain volumes and their direct and combined associations with CMBs on cognitive performance in middle-aged individuals with type 1 diabetes. Research Design and Me...
I. Kylaheiko, L. Kuusela, Tor-Björn Claesson et al.· medRxiv· 0 citations
OBJECTIVE
In temporal lobe epilepsy (TLE), patients often present with neurobehavioral comorbidities encompassing affective and cognitive difficulties. Whereas the latter have been related to atypical connectivity of mesiotemporal and frontotemporal circuits, the brain basis of affective symptoms remains incompletely u...
F. Fadaie, B. Caldairou, Boris C. Bernhardt et al.· Epilepsia· 0 citations
INTRODUCTION
We aimed to examine whether additional metrics derived from the CERAD Word List Memory Test (WLMT) such as acquisition patterns, error frequencies, and consolidation efficiency, are associated with cerebrospinal fluid (CSF) biomarkers of amyloid and tau pathology, as well as magnetic resonance imaging (MRI...
Lynn Sahhar, Milena Albrecht, Jennifer Pahl et al.· Journal of Clinical and Expe...· 0 citations