Differential Aging Effects on Implicit and Explicit Sensorimotor Learning
Cisneros, E.; Karny, S.; Ivry, R. B.; Tsay, J. S.
Show abstract
Deterioration in motor control is a hallmark of aging, significantly contributing to a decline in quality of life. More controversial is the question of whether and how aging impacts sensorimotor learning. We hypothesized that the inconsistent picture observed in the current literature can be attributed to at least two factors. First, aging studies tend to be underpowered. Second, the learning assays used in these experiments tend to reflect, to varying degrees, the operation of multiple learning processes, making it difficult to make inferences across studies. We took a two-pronged approach to address these issues. We first performed a meta-analysis of the sensorimotor adaptation literature focusing on outcome measures that provide estimates of explicit and implicit components of adaptation. We then conducted two well-powered experiments to re-examine the effect of aging on sensorimotor adaptation, using behavioral tasks designed to isolate explicit and implicit processes. Convergently, both approaches revealed a striking dissociation: Older individuals exhibited a marked impairment in their ability to discover an explicit strategy to counteract a visuomotor perturbation. However, they exhibited enhanced implicit recalibration. We hypothesize that the effect of aging on explicit learning reflects an age-related decline in reasoning and problem solving, and the effect of aging on implicit learning reflects age-related changes in multisensory integration. Taken together, these findings deepen our understanding of the impact of aging on sensorimotor learning.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Adults up to 80 years old maintain effective movement planning when facing complex body dynamics 95%
- Age-related changes in proprioception are of limited size, outcome-dependent and task-dependent. 94%
- Functional assessments of short-term spatial memory in the Dog Aging Project identify strong associations with age that are not moderated by body mass 93%
Similar papers in this journal
- Quantification of the pace of biological aging in humans through a blood test: The DunedinPoAm DNA methylation algorithm 94%
- Age-related differences in prefrontal glutamate are associated with increased working memory decay that gives the appearance of learning deficits 94%
- Modulation of spatial cue processing across the lifespan: a geometric polarization of space restores allocentric navigation strategies in children and older adults 94%
Similar papers in this journal
- Large Reaching Datasets Quantify the Impact of Age, Sex/Gender, and Experience on Motor Control 98%
- The vertical position of visual information conditions spatial memory performance in healthy aging 95%
- Children exhibit a developmental advantage in the offline processing of a learned motor sequence 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.