Chronological age and its impact on associative learning proficiency and brain structure in middle adulthood
Vaibhav A Diwadkar1, Marcella Bellani2, Rizwan Ahmed1
1Department of Psychiatry & Behavioral Neurosciences, Wayne State University, USA.
Introduction:
The rate of biological change in middle-adulthood is relatively under-studied. Here, we used behavioral testing in conjunction with structural magnetic resonance imaging to examine the effects of chronological age on associative learning proficiency and on brain regions that previous functional MRI studies have closely related to the domain of associative learning.
Methods:
Participants (n=66) completed a previously established associative learning paradigm, and consented to be scanned using structural magnetic resonance imaging. Age-related effects were investigated both across sub-groups in the sample (younger vs. older) and across the entire sample (using regression approaches).
Results:
Chronological age had substantial effects on learning proficiency (independent of IQ and Education Level), with older adults showing a decrement compared to younger adults. In addition, decreases in estimated gray matter volume were observed in multiple brain regions including the hippocampus and the dorsal prefrontal cortex, both of which are strongly implicated in associative learning.
Conclusion:
The results suggest that middle adulthood may be a more dynamic period of life-span change than previously believed. The conjunctive application of narrowly focused tasks, with conjointly acquired structural MRI data may allow us to enrich the search for, and the interpretation of, age-related changes in cross-sectional samples.
Related Concept Videos
Cognitive Development During Adulthood
Aging
Cellular Clock Theory
The cellular clock theory posits that the human lifespan is closely tied to the finite capacity of cells to divide, a phenomenon governed by telomeres, which are protective caps at the ends of...
Higher Mental Functions of Brain: Learning and Memory
Revisionist Views of Adolescent and Adult Cognition
Biological Influences on Intelligence
Role of Cerebellum and Prefrontal Cortex in Memory


