Interpreting Patterns of Brain Activation in Human Fear Conditioning With an Attentional-Associative Learning Model.

J. E. Dunsmoor, P. A. Bandettini, and D. C. Knight (2007) conducted a neuroimaging study of human fear conditioning and analyzed brain activity under various pairing rates between a conditioned and an unconditioned stimulus. Computer simulations with an attenlional-associative model introduced by N....

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Detalles Bibliográficos
Publicado en:Behavioral Neuroscience Vol. 123; no. 4; pp. 851 - 856
Autores principales: Dunsmoor, Joseph, Schmajuk, Nestor
Formato: Artículo
Publicado: American Psychological Association August 2009
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:J. E. Dunsmoor, P. A. Bandettini, and D. C. Knight (2007) conducted a neuroimaging study of human fear conditioning and analyzed brain activity under various pairing rates between a conditioned and an unconditioned stimulus. Computer simulations with an attenlional-associative model introduced by N. A. Schmajuk, Y. W. Lam, and J. A. Gray (1996) show that activity in the amygdala and anterior cingulate cortex is well described by a variable representing the prediction of the unconditioned stimulus, whereas activity in the dorsolateral prefrontal cortex and insula is well captured by a variable coding the attentional-modulated representation of conditioned stimuli. In addition, the model explains how those variables control behavior and provides a clear framework in which those variables play important roles in the description of numerous classical conditioning paradigms. Also, the model offers a number of predictions related to stimulus novelty for future neuroimaging studies of associative learning. Reprinted by permission of the publisher.