Literature DB >> 24090214

Caudate resting connectivity predicts implicit probabilistic sequence learning.

Chelsea M Stillman1, Evan M Gordon, Jessica R Simon, Chandan J Vaidya, Darlene V Howard, James H Howard.   

Abstract

Abstract Implicit probabilistic sequence learning (IPSL) involves extracting statistical regularities from sequences of events without awareness, and is thought to underlie learning of language and behavioral repertoires of everyday life. We examined whether resting-state functional connectivity networks of the caudate predicted individual differences in IPSL performance measured on a separate day. Whole-brain connectivity maps of a bilateral dorsal caudate (DC) seed were created for each subject and examined for voxelwise correlations with sequence learning performance, as well as with overall response speed. Higher learning scores (but not overall response speed) were associated with stronger resting-state connectivity between the DC and right medial temporal lobe, as well as with lower resting-state connectivity between the DC and premotor regions involved in motor planning. Thus, how well one learns probabilistic regularities without awareness is predicted by the strength of a striato-cortical network in the resting brain.

Mesh:

Year:  2013        PMID: 24090214      PMCID: PMC3868304          DOI: 10.1089/brain.2013.0169

Source DB:  PubMed          Journal:  Brain Connect        ISSN: 2158-0014


  53 in total

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

Authors:  Jessica R Simon; Chandan J Vaidya; James H Howard; Darlene V Howard
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8.  Dopamine transporter genotype predicts implicit sequence learning.

Authors:  Jessica R Simon; Melanie Stollstorff; Lauren C Westbay; Chandan J Vaidya; James H Howard; Darlene V Howard
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9.  Impact of in-scanner head motion on multiple measures of functional connectivity: relevance for studies of neurodevelopment in youth.

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Authors:  James H Howard; Darlene V Howard; Nancy A Dennis; Andrew J Kelly
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  13 in total

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3.  Impact of Visual Corticostriatal Loop Disruption on Neural Processing within the Parahippocampal Place Area.

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4.  Task-related functional connectivity of the caudate mediates the association between trait mindfulness and implicit learning in older adults.

Authors:  Chelsea M Stillman; Xiaozhen You; Kendra L Seaman; Chandan J Vaidya; James H Howard; Darlene V Howard
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5.  Financial literacy is associated with medial brain region functional connectivity in old age.

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6.  Multimodal imaging of brain connectivity reveals predictors of individual decision strategy in statistical learning.

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7.  Functional connectivity underlying postural motor adaptation in people with multiple sclerosis.

Authors:  Brett W Fling; Geetanjali Gera Dutta; Fay B Horak
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8.  Precentral gyrus functional connectivity signatures of autism.

Authors:  Mary Beth Nebel; Ani Eloyan; Anita D Barber; Stewart H Mostofsky
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9.  Implicit associative learning relates to basal ganglia gray matter microstructure in young and older adults.

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Journal:  Behav Brain Res       Date:  2020-10-02       Impact factor: 3.332

10.  Aging mind and brain: is implicit learning spared in healthy aging?

Authors:  James H Howard; Darlene V Howard
Journal:  Front Psychol       Date:  2013-11-07
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