Literature DB >> 24076012

Combining fMRI and behavioral measures to examine the process of human learning.

Elisabeth A Karuza1, Lauren L Emberson2, Richard N Aslin3.   

Abstract

Prior to the advent of fMRI, the primary means of examining the mechanisms underlying learning were restricted to studying human behavior and non-human neural systems. However, recent advances in neuroimaging technology have enabled the concurrent study of human behavior and neural activity. We propose that the integration of behavioral response with brain activity provides a powerful method of investigating the process through which internal representations are formed or changed. Nevertheless, a review of the literature reveals that many fMRI studies of learning either (1) focus on outcome rather than process or (2) are built on the untested assumption that learning unfolds uniformly over time. We discuss here various challenges faced by the field and highlight studies that have begun to address them. In doing so, we aim to encourage more research that examines the process of learning by considering the interrelation of behavioral measures and fMRI recording during learning.
Copyright © 2013 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Behavioral measures; Cognitive neuroscience; Learning; Outcome measures; Process; Time-course; fMRI

Mesh:

Year:  2013        PMID: 24076012      PMCID: PMC3963805          DOI: 10.1016/j.nlm.2013.09.012

Source DB:  PubMed          Journal:  Neurobiol Learn Mem        ISSN: 1074-7427            Impact factor:   2.877


  73 in total

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  17 in total

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Authors:  Matthew Masapollo; Jennifer A Segawa; Deryk S Beal; Jason A Tourville; Alfonso Nieto-Castañón; Matthias Heyne; Saul A Frankford; Frank H Guenther
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Review 5.  The emergence of top-down, sensory prediction during learning in infancy: A comparison of full-term and preterm infants.

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6.  Integrating when and what information in the left parietal lobe allows language rule generalization.

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7.  Tracing trajectories of audio-visual learning in the infant brain.

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8.  Neural processes underlying statistical learning for speech segmentation in dogs.

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9.  Neural dynamics underlying the acquisition of distinct auditory category structures.

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10.  Memory-Guided Attention: Independent Contributions of the Hippocampus and Striatum.

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