4.7 Article

Functional MRI of Cerebellar Activity During Eyeblink Classical Conditioning in Children and Adults

Journal

HUMAN BRAIN MAPPING
Volume 35, Issue 4, Pages 1390-1403

Publisher

WILEY
DOI: 10.1002/hbm.22261

Keywords

cerebellum; development; learning; memory; neuroimaging

Funding

  1. National Institute on Alcohol Abuse and Alcoholism at the National Institutes of Health [R01 AA016781, K01 AA020873]
  2. South African National Research Chair Initiative

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This study characterized human cerebellar activity during eyeblink classical conditioning (EBC) in children and adults using functional magnetic resonance imaging (fMRI). During fMRI, participants were administered delay conditioning trials, in which the conditioned stimulus (a tone) precedes, overlaps, and coterminates with the unconditioned stimulus (a corneal airpuff). Behavioral eyeblink responses and brain activation were measured concurrently during two phases: pseudoconditioning, involving presentations of tone alone and airpuff alone, and conditioning, during which the tone and airpuff were paired. Although all participants demonstrated significant conditioning, the adults produced more conditioned responses (CRs) than the children. When brain activations during pseudoconditioning were subtracted from those elicited during conditioning, significant activity was distributed throughout the cerebellar cortex (Crus I-II, lateral lobules IV-IX, and vermis IV-VI) in all participants, suggesting multiple sites of associative learning-related plasticity. Despite their less optimal behavioral performance, the children showed greater responding in the pons, lateral lobules VIII, IX, and Crus I, and vermis VI, suggesting that they may require greater activation and/or the recruitment of supplementary structures to achieve successful conditioning. Correlation analyses relating brain activations to behavioral CRs showed a positive association of activity in cerebellar deep nuclei (including dentate, fastigial, and interposed nuclei) and vermis VI with CRs in the children. This is the first study to compare cerebellar cortical and deep nuclei activations in children versus adults during EBC. Hum Brain Mapp 35:1390-1403, 2014. (c) 2013 Wiley Periodicals, Inc.

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