Multistep inference across the human lifespan can be improved with individualized memory interventions.
Sharon M Noh1, Keiland W Cooper2, Shuheng Guo1
1Department of Cognitive Sciences, The University of California, Irvine, Irvine, California, United States.
Summary
Age-related memory decline impacts decision-making. Improving mnemonic discrimination, a measure of memory precision, can enhance learning and reasoning for goal-directed planning in adults.
Area of Science:
- Cognitive Neuroscience
- Aging Research
- Decision-Making
Background:
- Goal-directed decision-making depends on memory and planning, which often decline with age.
- Mnemonic discrimination, a measure of memory precision, is uniquely vulnerable to age-related decline.
- This study investigates if memory precision is a common mechanism underlying age-related cognitive declines.
Purpose of the Study:
- To test if age-related declines in decision-making stem from a common mechanism related to memory precision.
- To assess the impact of learning schedules on cognitive performance based on memory abilities.
- To explore potential interventions for preserving decision-making abilities in aging adults.
Main Methods:
- A latent learning task was used to assess inference judgments and relational structure organization across the adult lifespan.
- Experiment 1 examined the relationship between judgment performance and mnemonic discrimination.
- Experiment 2 tested if a blocked learning schedule improved performance for individuals with lower memory precision, alongside neural network simulations.
Main Results:
- Both young and older adults demonstrated latent learning and inference, but performance variability was linked to mnemonic discrimination ability.
- Mnemonic discrimination interacted with training conditions: intermixed training favored high memory precision, while blocked training benefited low memory precision.
- Artificial neural network simulations replicated these observed patterns.
Conclusions:
- Age-related declines in complex judgments are associated with reduced mnemonic discrimination.
- Individualized, memory-based training can enhance learning and reasoning for goal-directed planning.
- These findings offer a promising strategy for maintaining decision-making capabilities throughout life.
Keywords:
Goal-directed planningIndividual differencesLatent learningMemory precisionTraining interventionMore Related Videos
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