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Jensen, Eric – Educational Horizons, 2012
An essential understanding about brain-based education is that most neuroscientists don't teach and most teachers don't do research. It's unrealistic to expect neuroscientists to reveal which classroom strategies will work best. That's not appropriate for neuroscientists, and most don't do that. Many critics could cite this as a weakness, but it's…
Descriptors: Relevance (Education), Genetics, Brain, Cognitive Processes
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Pulver, Stefan R.; Hornstein, Nicholas J.; Land, Bruce L.; Johnson, Bruce R. – Advances in Physiology Education, 2011
Here we incorporate recent advances in "Drosophila" neurogenetics and "optogenetics" into neuroscience laboratory exercises. We used the light-activated ion channel channelrhodopsin-2 (ChR2) and tissue-specific genetic expression techniques to study the neural basis of behavior in "Drosophila" larvae. We designed and implemented exercises using…
Descriptors: Animal Behavior, Physiology, Genetics, Science Laboratories
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Schulte-Korne, Gerd; Ludwig, Kerstin U.; el Sharkawy, Jennifer; Nothen, Markus M.; Muller-Myhsok, Bertram; Hoffmann, Per – Mind, Brain, and Education, 2007
Our understanding of the causes of a developmental disorder like dyslexia has received recent input from both neuroscience and genetics. The discovery of 4 candidate genes for dyslexia and the identification of neuronal networks engaged when children read and spell are the basis for introducing this knowledge into education. However, the input…
Descriptors: Dyslexia, Genetics, Neurological Organization, Educational Research
Schopler, Eric – 1990
This paper reviews the evidence for various biological mechanisms in autism and discusses implications of these mechanisms for treatment. A brief introductory discussion examines the history of research on autism. Then the literature is reviewed and treatment implications are drawn for the following biological mechanisms: genetic disorders;…
Descriptors: Autism, Biological Influences, Etiology, Genetics