Literature DB >> 21861675

The effects of aging on the neural basis of implicit associative learning in a probabilistic triplets learning task.

Jessica R Simon1, Chandan J Vaidya, James H Howard, Darlene V Howard.   

Abstract

Few studies have investigated how aging influences the neural basis of implicit associative learning, and available evidence is inconclusive. One emerging behavioral pattern is that age differences increase with practice, perhaps reflecting the involvement of different brain regions with training. Many studies report hippocampal involvement early on with learning becoming increasingly dependent on the caudate with practice. We tested the hypothesis that the contribution of these regions to learning changes with age because of differential age-related declines in the striatum and hippocampi. We assessed age-related differences in brain activation during implicit associative learning using the Triplets Learning Task. Over three event-related fMRI runs, 11 younger and 12 healthy older adults responded to only the third (target) stimulus in sequences of three stimuli ("triplets") by corresponding key press. Unbeknown to participants, the first stimulus' location predicted one target location for 80% of trials and another target location for 20% of trials. Both age groups learned associative regularities but differences in favor of the younger adults emerged with practice. The neural basis of learning (response to predictability) was examined by identifying regions that showed a greater response to triplets that occurred more frequently. Both age groups recruited the hippocampus early, but with training, the younger adults recruited their caudate whereas the older adults continued to rely on their hippocampus. This pattern enables older adults to maintain near-young levels of performance early in training, but not later, and adds to evidence that implicit associative learning is supported by different brain networks in younger and older adults.

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Year:  2011        PMID: 21861675      PMCID: PMC3629094          DOI: 10.1162/jocn_a_00116

Source DB:  PubMed          Journal:  J Cogn Neurosci        ISSN: 0898-929X            Impact factor:   3.225


  50 in total

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  27 in total

1.  Age differences in implicit learning of probabilistic unstructured sequences.

Authors:  Jessica R Simon; James H Howard; Darlene V Howard
Journal:  J Gerontol B Psychol Sci Soc Sci       Date:  2010-10-25       Impact factor: 4.077

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3.  Caudate resting connectivity predicts implicit probabilistic sequence learning.

Authors:  Chelsea M Stillman; Evan M Gordon; Jessica R Simon; Chandan J Vaidya; Darlene V Howard; James H Howard
Journal:  Brain Connect       Date:  2013-11-14

4.  Adult age differences in learning on a sequentially cued prediction task.

Authors:  Kendra L Seaman; Darlene V Howard; James H Howard
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5.  Dispositional mindfulness is associated with reduced implicit learning.

Authors:  Chelsea M Stillman; Halley Feldman; Caroline G Wambach; James H Howard; Darlene V Howard
Journal:  Conscious Cogn       Date:  2014-07-25

6.  Cardiorespiratory fitness and hippocampal volume predict faster episodic associative learning in older adults.

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8.  The Effects of Structural Complexity on Age-Related Deficits in Implicit Probabilistic Sequence Learning.

Authors:  Chelsea M Stillman; James H Howard; Darlene V Howard
Journal:  J Gerontol B Psychol Sci Soc Sci       Date:  2014-09-22       Impact factor: 4.077

9.  The neural correlates of statistical learning in a word segmentation task: An fMRI study.

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10.  Implicit learning of predictive relationships in three-element visual sequences by young and old adults.

Authors:  James H Howard; Darlene V Howard; Nancy A Dennis; Andrew J Kelly
Journal:  J Exp Psychol Learn Mem Cogn       Date:  2008-09       Impact factor: 3.051

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