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De Jager, C. H.

Publications and source records attributed to De Jager, C. H..

2 recordsLinked to original sources

Global cognitive performance is not influenced by diurnal rhythm

ObjectiveThe human brain is influenced by different biological rhythms, including the daily 24-hour (diurnal) cycle. Past studies have reported evidence of variation in cognitive performance over the course of the day, and of differences in the peak time for cognition in older age. Here, we investigated these questions using two existing longitudinal studies of healthy adults. MethodsTime of neuropsychological battery testing was extracted from study records, and we analyzed cognitive performance measures from 4 domains (Vocabulary, Processing Speed, Fluid Reasoning, and Episodic Memory) in 543 healthy adults between the ages of 20 and 80. Time of day was dichotomized as morning (281 tested before noon), and afternoon (242 tested after noon). ResultsMultivariate analyses controlling for both gender and years of education revealed no significant effect of time of testing (or its interaction with participant age) on cognitive performance. These results suggest that diurnal effects during time periods typically used to test human subjects are unlikely to have a meaningful effect on performance on the neuropsychological tests that are used for standard cognitive assessment. ConclusionThis suggests that the effect of time of day on cognition in the context of aging may not be as ubiquitous as previously suggested, and thus is unlikely to represent a large confound in existing studies of cognition across the adult lifespan.

neuroscience

Neuroticism alters the transcriptome of the frontal cortex to contribute to the cognitive decline and onset of Alzheimer's disease

Accumulating evidence has suggested that the molecular transcriptional mechanism contributes to Alzheimers disease (AD) and its endophenotypes of cognitive decline and neuropathological traits, {beta}-amyloid (A{beta}) and phosphorylated tangles (TAU). However, it is unknown what is the impact of the AD risk factors, personality characteristics assessed by the NEO Five-Factor Inventory, on the human brains transcriptome. Using postmortem human brain samples from 466 subjects, we found that neuroticism has a significant overall impact on the brain transcriptome (omnibus P=0.005) but not the other 4 personality characteristics. Focused on those cognitive decline related gene co-expressed modules, neuroticism has nominally significant associations (P<0.05) with four neuronal modules, which are more related to PHFtau than A{beta} across all eight brain regions. Furthermore, the effect of neuroticism on cognitive decline and AD might be mediated through the expression of module 7 and TAU pathology (P=0.008). To conclude, neuroticism has overall impact on human brains transcriptome and its effect on cognitive decline and AD might be mediated through TAU pathology related gene transcription mechanism.

neuroscience