Biophysics of computation
information processing in single neurons
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Author
Publication
1999 - Oxford University Press, New York, United States
Language
English
Word Count
140,500 words, Guess
Page Count
562 pages
Identifiers
- Open LibraryOL22581338M
- ISBN-100195104919
- OCLC Control Number778073952
- OCLC Control Number57283501
- OCLC Control Number38130648
and 4 more
- OCLC Control Numberbiophysicsofcomp0000koch
- Library of Congress Control Number97051390
- Goodreads1744233
- LibraryThing243795
Classifications
- DDC573.8/536
- LCCQP357.5
Description
Neural network research often builds on the fiction that neurons are simple linear threshold units, completely neglecting the highly dynamic and complex nature of synapses, dendrites, and voltage-dependent ionic currents. Biophysics of Computation: Information Processing in Single Neurons challenges this notion, using richly detailed experimental and theoretical findings from cellular biophysics to explain the repertoire of computational functions available to single neurons. The author shows how individual nerve cells can multiply, integrate, or delay synaptic inputs and how information can be encoded in the voltage across the membrane, in the intracellular calcium concentration, or in the timing of individual spikes. Biophysics of Computation: Information Processing in Single Neurons serves as an ideal text for advanced undergraduate and graduate courses in cellular biophysics, computational neuroscience, and neural networks, and will appeal to students and professionals in neuroscience, electrical and computer engineering, and physics.
Subjects
Topics
Series Statement
- Computational neuroscience
Other Editions
- Biophysics of computation: information processing in single neurons
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