Plasticity of Cortical Activation Related to Working Memory During Training
- 1 April 2004
- journal article
- Published by American Psychiatric Association Publishing in American Journal of Psychiatry
- Vol. 161 (4) , 745-747
- https://doi.org/10.1176/appi.ajp.161.4.745
Abstract
Although it is well established that cerebral activation increases with higher task load, the potential effects of training have been investigated over brief periods only. Training is of potential clinical relevance since training programs are an essential part of psychiatric therapy. Cerebral activation during a visual spatial working memory task was examined before, during, and after 4 weeks of daily training in nine healthy subjects using functional magnetic resonance imaging. All subjects showed a pronounced activation mainly involving the right inferior frontal gyrus and the right intraparietal sulcus. While the respective regions showed activation increases with improved performance after 2 weeks of training, the activation values decreased at the time of consolidation of performance gains after 4 weeks. Our results suggest that training-related cerebral activation changes follow an inverse U-shaped quadratic function and raise the prospect of investigating cerebral mechanisms underlying training effects.Keywords
This publication has 14 references indexed in Scilit:
- Neural mechanisms of general fluid intelligenceNature Neuroscience, 2003
- Impairment in basal limbic function in schizophrenia during affect recognitionPsychiatry Research: Neuroimaging, 2003
- Encoding Strategies Dissociate Prefrontal Activity from Working Memory DemandNeuron, 2003
- Effects on the brain of a psychological treatment: Cognitive remediation therapyThe British Journal of Psychiatry, 2002
- Specific versus Nonspecific Brain Activity in a Parametric N-Back TaskNeuroImage, 2000
- Practice‐related functional activation changes in a working memory taskMicroscopy Research and Technique, 2000
- Physiological Characteristics of Capacity Constraints in Working Memory as Revealed by Functional MRICerebral Cortex, 1999
- Motor Dysfunction and Sensorimotor Cortex Activation Changes in Schizophrenia: A Study with Functional Magnetic Resonance ImagingNeuroImage, 1999
- Neural mechanisms for visual memory and their role in attentionProceedings of the National Academy of Sciences, 1996
- Statistical parametric maps in functional imaging: A general linear approachHuman Brain Mapping, 1994