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Butler, Christopher W.; Wilson, Yvette M.; Gunnersen, Jenny M.; Murphy, Mark – Learning & Memory, 2015
Memory formation is thought to occur via enhanced synaptic connectivity between populations of neurons in the brain. However, it has been difficult to localize and identify the neurons that are directly involved in the formation of any specific memory. We have previously used "fos-tau-lacZ" ("FTL") transgenic mice to identify…
Descriptors: Fear, Memory, Animals, Animal Behavior
Tipps, Megan E.; Raybuck, Jonathan D.; Buck, Kari J.; Lattal, K. Matthew – Learning & Memory, 2014
Strain comparison studies have been critical to the identification of novel genetic and molecular mechanisms in learning and memory. However, even within a single learning paradigm, the behavioral data for the same strain can vary greatly, making it difficult to form meaningful conclusions at both the behavioral and cellular level. In fear…
Descriptors: Learning, Memory, Fear, Conditioning
Peer reviewedStokes, Allen W.; Cox, Lois M. – Bioscience, 1970
Descriptors: Aggression, Animal Behavior, Behavior, Conditioning
American Psychological Association, Washington, DC. – 1981
Each of these eight units dealing with human behavior is designed for high school psychology courses and consists of a teacher handbook and a student booklet. The developers believe that the systematic study of behavior can increase students' understanding of the lives they lead. Each unit was prepared by a different team consisting of two high…
Descriptors: Animal Behavior, Attitude Change, Behavior, Communication (Thought Transfer)
Peer reviewedThompson, Rihard F. – Science, 1986
Describes recent research findings in the area of neurobiology and its relationship to learning and memory. The article provides definitions of associative and nonassociative learning, identifies essential memory trace circuits of the mammalian brain, and discusses some neural mechanisms of learning. (TW)
Descriptors: Animal Behavior, Artificial Intelligence, Behavior, Cardiovascular System

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