scholarly journals Neural and behavioral correlates of episodic memory are associated with temporal discounting in older adults

2019 ◽  
Author(s):  
Karolina M. Lempert ◽  
Dawn J. Mechanic-Hamilton ◽  
Long Xie ◽  
Laura E.M. Wisse ◽  
Robin de Flores ◽  
...  

AbstractWhen facing decisions involving trade-offs between smaller, sooner and larger, delayed rewards, people tend to discount the value of future rewards. There are substantial individual differences in this tendency toward temporal discounting, however. One neurocognitive system that may underlie these individual differences is episodic memory, given the overlap in the neural circuitry involved in imagining the future and remembering the past. Here we tested this hypothesis in older adults, including both those that were cognitively normal and those with amnestic mild cognitive impairment (MCI). We found that performance on neuropsychological measures of episodic memory retrieval was associated with temporal discounting, such that people with better memory discounted delayed rewards less. This relationship was specific to episodic memory and temporal discounting, since executive function (another cognitive ability) was unrelated to temporal discounting, and episodic memory was unrelated to risk tolerance (another decision-making preference). We also examined cortical thickness and volume in medial temporal lobe regions critical for episodic memory. Entorhinal cortical thickness was associated with reduced temporal discounting, with episodic memory performance partially mediating this association. The inclusion of MCI participants was critical to revealing these associations between episodic memory and entorhinal cortical thickness and temporal discounting. These effects were larger in the MCI group, reduced after controlling for MCI status, and statistically significant only when including MCI participants in analyses. Overall, these findings suggest that individual differences in temporal discounting are driven by episodic memory function, and that a decline in medial temporal lobe structural integrity may impact temporal discounting.

2012 ◽  
Vol 24 (7) ◽  
pp. 1065-1075 ◽  
Author(s):  
James T. Becker ◽  
Ranjan Duara ◽  
Ching-Wen Lee ◽  
Leonid Teverovsky ◽  
Beth E. Snitz ◽  
...  

ABSTRACTBackground: Population-based studies face challenges in measuring brain structure relative to cognitive aging. We examined the feasibility of acquiring state-of-the-art brain MRI images at a community hospital, and attempted to cross-validate two independent approaches to image analysis.Methods: Participants were 49 older adults (29 cognitively normal and 20 with mild cognitive impairment (MCI)) drawn from an ongoing cohort study, with annual clinical assessments within one month of scan, without overt cerebrovascular disease, and without dementia (Clinical Dementia Rating (CDR) < 1). Brain MRI images, acquired at the local hospital using the Alzheimer's Disease Neuroimaging Initiative protocol, were analyzed using (1) a visual atrophy rating scale and (2) a semi-automated voxel-level morphometric method. Atrophy and volume measures were examined in relation to cognitive classification (any MCI and amnestic MCI vs. normal cognition), CDR (0.5 vs. 0), and presumed etiology.Results: Measures indicating greater atrophy or lesser volume of the hippocampal formation, the medial temporal lobe, and the dilation of the ventricular space were significantly associated with cognitive classification, CDR = 0.5, and presumed neurodegenerative etiology, independent of the image analytic method. Statistically significant correlations were also found between the visual ratings of medial temporal lobe atrophy and the semi-automated ratings of brain structural integrity.Conclusions: High quality MRI data can be acquired and analyzed from older adults in population studies, enhancing their capacity to examine imaging biomarkers in relation to cognitive aging and dementia.


2018 ◽  
Author(s):  
Karolina Maria Lempert ◽  
David A. Wolk ◽  
Joe Kable

People often make decisions involving trade-offs between smaller immediate and larger delayed rewards. In intertemporal choices such as these, individuals tend to discount the value of future rewards, a tendency known as temporal discounting. Most people exhibit some degree of temporal discounting, but the rate at which people discount future rewards varies widely. Two neurocognitive systems have been proposed as potential candidates for mediating individual differences in discounting: executive function and declarative memory. Both of these functions decline as people age, at rates that vary across individuals. Here we leverage this variability in cognitive abilities among older adults (both cognitively normal and with mild cognitive impairment, MCI) to investigate associations between temporal discounting and executive function versus declarative memory. We find that neuropsychological measures of declarative memory (episodic memory retrieval and semantic fluency), but not executive function (Trail Making Test and lexical fluency), are associated with temporal discounting. People with better memory discount delayed rewards less. Consistent with this, individuals diagnosed with MCI show steeper discount rates compared to cognitively normal older adults. In contrast, executive function, but not declarative memory, is associated with the extent to which an individual is risk-neutral, or expected-value maximizing, in a risky choice task. These findings elucidate the inconsistent literature on aging and economic preferences, and they suggest that distinct neural systems mediate individual differences in the risk and time domain.


NeuroImage ◽  
2012 ◽  
Vol 63 (1) ◽  
pp. 507-516 ◽  
Author(s):  
Erling Tjelta Westlye ◽  
Erlend Hodneland ◽  
Judit Haász ◽  
Thomas Espeseth ◽  
Arvid Lundervold ◽  
...  

2020 ◽  
Author(s):  
Susan L. Benear ◽  
Elizabeth A. Horwath ◽  
Emily Cowan ◽  
M. Catalina Camacho ◽  
Chi Ngo ◽  
...  

The medial temporal lobe (MTL) undergoes critical developmental change throughout childhood, which aligns with developmental changes in episodic memory. We used representational similarity analysis to compare neural pattern similarity for children and adults in hippocampus and parahippocampal cortex during naturalistic viewing of clips from the same movie or different movies. Some movies were more familiar to participants than others. Neural pattern similarity was generally lower for clips from the same movie, indicating that related content taxes pattern separation-like processes. However, children showed this effect only for movies with which they were familiar, whereas adults showed the effect consistently. These data suggest that children need more exposures to stimuli in order to show mature pattern separation processes.


AGE ◽  
2006 ◽  
Vol 28 (3) ◽  
pp. 221-233 ◽  
Author(s):  
Michela Gallagher ◽  
Carlo Colantuoni ◽  
Howard Eichenbaum ◽  
Rebecca P. Haberman ◽  
Peter R. Rapp ◽  
...  

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