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Titlebook: Learning and Memory; Richard F. Thompson Book 1989 Springer Science+Business Media New York 1989 learning.medicine.memory.neurosciences

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John H. Byrnen jeweiligen Entscheidungsträgern umfassend abgewogen wurden. Von den Anfängen der 80er Jahre des 20. Jahrhunderts bis zum gegenwärtigen Zeitpunkt entwickelte sich der Bedarf nach Antworten auf die zunehmend kostenintensiveren IT-Landschaften parallel zur der Ausbreitung des Computers in sämtlichen
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Behaviorismis assumed that the behavior of organisms obeys natural laws and can be examined from a scientific point of view. In principle, this means that what an organism does at any point in time is a function of the state of the organism and the environment. This deterministic position is in explicit contra
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Learning and Memoryis due largely to the memory store—the biological residue of memory from a lifetime of experience. The cellular basis of this ability to learn can be traced to simpler organisms. In the past generation, understanding of the biological basis of learning and memory has undergone a revolution. It is cl
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Learning and Memory, Neural Mechanismso explain and whose nervous system possesses properties that make neuroanatomical, neuropharmacological, and neurophysiological experimentation tractable. The goal is to work out in detail (to a cellular level) how a nervous system controls some type of behavior. This description then is taken to be
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Synaptic Plasticity to virtually any form of change in the nervous system or in behavior. Synaptic plasticity may be defined as the capability of synapses to vary their function, to be replaced, and to increase or decrease in number when required. In studies on synaptic plasticity, it is a widely held working hypothes
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Long-Term Potentiation and Memorye hippocampus, in area CAI and the dentate gyrus. The link between LTP and hippocampus is well established and suggests a role for LTP in learning and memory, as is widely hypothesized for the hippocampus. LTP is considered a potential candidate for the neural basis of long-term information storage
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Kindlingas been observed in reptiles, amphibians, rodents, lagomorphs, felines, canines, and primates; animals with more complex brains show the most complex and severe convulsions. The areas of the brain from which kindling may be observed include almost the entire forebrain, but not areas from the mesence
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Memory, Distributedhas led many workers to the concept of distributed memory. For distributed memory (more like a hologram than a photograph) possesses in a very natural way the property of relative invulnerability to the loss of storage units: individual memory sites hold superimposed information concerning many even
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