Fr. 238.00

Brain Theory From A Circuits And Systems Perspective - How Eectrical Science Explains Neuro-circuits, Neuro-systems, and Qubits

English · Hardback

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Description

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This book models an idealized neuron as being driven by basic electrical elements, the goal being to systematically characterize the logical properties of neural pulses. In order to constitute a system, neurons as pulsating devices may be represented using novel circuit elements as delineated in this book. A plausible brain system is implied by the delineated elements and logically follows from known and likely properties of a neuron. New to electrical science are novel pulse-related circuit elements involving recursive neurons. A recursive neuron, when properly excited, produces a self-sustaining pulse train that when sampled, provides a true output with a specified probability, and a false output with complementary probability. Because of its similarity to the qubits of quantum mechanics, the recursive pulsating neuron is termed a simulated qubit. Recursive neurons easily function as controlled toggle devices and so are capable of massively parallel calculations, this being a new dimension in brain functioning as described in this book. Simulated qubits and their possibilities are compared to the qubits of quantum physics. Included in the book are suggested neural circuits for associative memory search via a randomized process of cue selection, and neural circuits for priority calculations. These serve to select returns from long term memory, which in turn determines one's next conscious thought or action based on past memorized experiences. The book reports on proposals involving electron tunneling between synapses, and quantum computations within neurons. Although not a textbook, there are easy exercises at the ends of chapters, and in the appendix there are twelve simulation experiments concerning neurons.

List of contents

1. Brain Structure And Brain System2. Circuit Elements Required For Neural Networks3. Long Term Memory, Simulated Qubits, Physical Qubits4. Outline of a Cue Editor5. Plans For A Recall Referee6. Arithmetic Using Simulated Qubits7. Long Term Memory Neural Circuits, Fast And Precise8. Neuroquantology, The Ultimate Quest9. Phase TransformsAppendix 1

Summary

This book models  an idealized neuron as being driven by basic electrical elements, the goal being to systematically characterize the logical properties of neural pulses.  In order to constitute a system, neurons as pulsating devices may be represented using novel circuit elements as delineated in this book.  A plausible brain system is implied by the delineated elements and logically follows from known and likely properties of a neuron.
 
New to electrical science are novel pulse-related circuit elements involving recursive neurons.  A recursive neuron, when properly excited, produces a self-sustaining pulse train that when sampled,  provides a true output with a specified probability, and a false output with complementary probability.  Because of its similarity to the qubits of quantum mechanics, the recursive pulsating neuron is termed a simulated qubit.  Recursive neurons easily function as controlled toggle devices and so are capable of massively parallel calculations, this being a new dimension in brain functioning as described in this book. 
 
Simulated qubits and their possibilities are compared to the qubits of quantum physics.  Included in the book are suggested neural circuits for associative memory search via a randomized process of cue selection, and neural circuits for priority calculations.  These serve to select returns from long term memory, which in turn determines one's next conscious thought or action based on past memorized experiences.
 
The book reports on proposals involving electron tunneling between synapses, and quantum computations within neurons.  Although not a textbook, there are easy exercises at the ends of chapters, and in the appendix there are twelve simulation experiments concerning neurons.

Product details

Authors John Robert Burger, Robert Burger John
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 18.12.2012
 
EAN 9781461464112
ISBN 978-1-4614-6411-2
No. of pages 227
Dimensions 164 mm x 243 mm x 15 mm
Weight 479 g
Illustrations XVI, 227 p.
Series Springer Series in Cognitive and Neural Systems
Springer Series in Cognitive and Neural Systems
Subjects Humanities, art, music > Psychology > Theoretical psychology
Natural sciences, medicine, IT, technology > Medicine > Clinical medicine

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