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Journal ArticleDOI

Principles of Neural Science

Michael P. Alexander
- 06 Jun 1986 - 
- Vol. 255, Iss: 21, pp 3021-3021
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TLDR
The editors have done a masterful job of weaving together the biologic, the behavioral, and the clinical sciences into a single tapestry in which everyone from the molecular biologist to the practicing psychiatrist can find and appreciate his or her own research.
Abstract
I have developed "tennis elbow" from lugging this book around the past four weeks, but it is worth the pain, the effort, and the aspirin. It is also worth the (relatively speaking) bargain price. Including appendixes, this book contains 894 pages of text. The entire panorama of the neural sciences is surveyed and examined, and it is comprehensive in its scope, from genomes to social behaviors. The editors explicitly state that the book is designed as "an introductory text for students of biology, behavior, and medicine," but it is hard to imagine any audience, interested in any fragment of neuroscience at any level of sophistication, that would not enjoy this book. The editors have done a masterful job of weaving together the biologic, the behavioral, and the clinical sciences into a single tapestry in which everyone from the molecular biologist to the practicing psychiatrist can find and appreciate his or

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References
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Journal ArticleDOI

Vocabulary acquisition and verbal short-term memory: Computational and neural bases.

TL;DR: The present work relates vocabulary acquisition and verbal short-term memory to each other and to speech processing, at a cognitive, computational, and neural level.
Journal ArticleDOI

Action of thyroid hormone in brain.

TL;DR: Surprisingly, null-mutant mice for the T3 receptors show almost no signs of central nervous system involvement, in contrast with the severe effects of hypothyroidism, which is essential to understand the role of thyroid hormone and its receptors in brain development and function.
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Cerebral energetics and spiking frequency: The neurophysiological basis of fMRI

TL;DR: The results show how BOLD imaging, when converted to ΔCMRO2/CM RO2, responds to localized changes in neuronal spike frequency and neurotransmitter flux.
Journal ArticleDOI

Synchronization transitions on scale-free neuronal networks due to finite information transmission delays.

TL;DR: It is argued that fine-tuned information transmission delays are vital for assuring optimally synchronized excitatory fronts on complex neuronal networks and, indeed, they should be seen as important as the coupling strength or the overall density of interneuronal connections.
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