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In What Ways Do Cognitive Enhancers Alter Brain Plasticity to Enhance Learning?

Cognitive enhancers, like modafinil and racetams, can help our brains work better in a few important ways:

  1. Boosting Brain Chemicals: These substances increase the amounts of certain chemicals in the brain, like dopamine and acetylcholine, by up to 35%. This helps improve how brain cells communicate with each other.

  2. Helping Brain Growth: Cognitive enhancers can raise levels of a protein called BDNF (brain-derived neurotrophic factor) by more than 100%. This protein helps create new brain cells.

  3. Improving Signals: They can also improve the signaling of glutamate, which is key for strengthening connections between brain cells. Some studies show a 25% improvement in this process, known as long-term potentiation (LTP).

These changes help us learn new things and remember them better.

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Structure of the BrainFunctions of the BrainNeurons and SynapsesUnderstanding NeuroplasticityApplications of NeuroplasticityConsequences of NeuroplasticityMemory Enhancement StrategiesTypes of Memory TechniquesMemory Training ProgramsCognitive Enhancement StrategiesEducation and Cognitive EnhancementTools for Cognitive EnhancementOverview of Mental Health DisordersTreatment Approaches for Mental Health DisordersPreventive Measures for Mental HealthBasics of Learning PsychologyTheories of LearningApplications of Learning Psychology
Click HERE to see similar posts for other categories

In What Ways Do Cognitive Enhancers Alter Brain Plasticity to Enhance Learning?

Cognitive enhancers, like modafinil and racetams, can help our brains work better in a few important ways:

  1. Boosting Brain Chemicals: These substances increase the amounts of certain chemicals in the brain, like dopamine and acetylcholine, by up to 35%. This helps improve how brain cells communicate with each other.

  2. Helping Brain Growth: Cognitive enhancers can raise levels of a protein called BDNF (brain-derived neurotrophic factor) by more than 100%. This protein helps create new brain cells.

  3. Improving Signals: They can also improve the signaling of glutamate, which is key for strengthening connections between brain cells. Some studies show a 25% improvement in this process, known as long-term potentiation (LTP).

These changes help us learn new things and remember them better.

Related articles