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Neuroscience-informed computer-assisted cognitive training in schizophrenia.

Melissa Fisher1, Alexander Herman2, Dustin B Stephens3

  • 1Department of Psychiatry, University of California, San Francisco, and San Francisco Department of Veterans Affairs Medical Center, San Francisco, California.

Annals of the New York Academy of Sciences
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Summary

Cognitive training in schizophrenia can enhance neural function and potentially reverse disease progression by harnessing neuroplasticity. Research compares broad rehabilitation with targeted training for optimal outcomes.

Keywords:
cognitive trainingconnectomeneurodevelopmentneuroplasticityneurosciencepsychiatric syndromeschizophrenia

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Area of Science:

  • Neuroscience
  • Psychiatry
  • Cognitive Science

Background:

  • Schizophrenia is a complex neurodevelopmental disorder with early symptoms like cognitive deficits and brain changes.
  • It involves widespread neural network dysfunction, termed "neural oscillatory connectomopathy."
  • Despite past beliefs, schizophrenia patients retain neuroplasticity, offering potential for intervention.

Purpose of the Study:

  • To review computer-assisted cognitive training programs for schizophrenia.
  • To compare broad neuropsychological rehabilitation with targeted cognitive training.
  • To examine the neurobiological effects of these training methods.

Main Methods:

  • Review of existing literature on cognitive training in schizophrenia.
  • Comparison of broad versus targeted cognitive training approaches.
  • Analysis of neurobiological outcomes associated with different training methods.

Main Results:

  • Computer-assisted cognitive training shows promise in schizophrenia treatment.
  • Both broad and targeted approaches have demonstrated neurobiological effects.
  • Understanding neuroplasticity is key to improving cognitive function.

Conclusions:

  • Harnessing neuroplasticity through cognitive training can improve schizophrenia outcomes.
  • Targeted cognitive training may offer specific benefits.
  • Future research should focus on the "oscillatory connectome" for precise treatments.