Please use this identifier to cite or link to this item: http://localhost/handle/Hannan/1304
Title: An Introduction to Modeling Neuronal Dynamics
Authors: Bergers, Christoph. ;
subject: Mathematics. ;;Neurosciences. ;;Neural networks (Computer science). ;;Biomathematics. ;;Vibration. ;;Dynamical systems. ;;Dynamics. ;;Mathematics. ;;Mathematical Models of Cognitive Processes and Neural Networks. ;;Mathematical and Computational
Year: 2017
place: Cham :
Publisher: Springer International Publishing :
Imprint: Springer,
Series/Report no.: Texts in Applied Mathematics, ; 0939-2475 ; ; 66. ;
Texts in Applied Mathematics, ; 0939-2475 ; ; 66. ;
Abstract: This book is intended as a text for a one-semester course on Mathematical and Computational Neuroscience for upper-level undergraduate and beginning graduate students of mathematics, the natural sciences, engineering, or computer science. An undergraduate introduction to differential equations is more than enough mathematical background. Only a slim, high school-level background in physics is assumed, and none in biology. Topics include models of individual nerve cells and their dynamics, models of networks of neurons coupled by synapses and gap junctions, origins and functions of population rhythms in neuronal networks, and models of synaptic plasticity. An extensive online collection of Matlab programs generating the figures accompanies the book. . ;
Description: Printed edition: ; 9783319511702. ;
SpringerLink (Online service) ;




URI: http://localhost/handle/Hannan/1304
ISBN: 9783319511719 ;
9783319511702 (print) ;
More Information: XIII, 457 p. 356 illus., 186 illus. in color. ; online resource. ;
Appears in Collections:مهندسی فناوری اطلاعات

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Title: An Introduction to Modeling Neuronal Dynamics
Authors: Bergers, Christoph. ;
subject: Mathematics. ;;Neurosciences. ;;Neural networks (Computer science). ;;Biomathematics. ;;Vibration. ;;Dynamical systems. ;;Dynamics. ;;Mathematics. ;;Mathematical Models of Cognitive Processes and Neural Networks. ;;Mathematical and Computational
Year: 2017
place: Cham :
Publisher: Springer International Publishing :
Imprint: Springer,
Series/Report no.: Texts in Applied Mathematics, ; 0939-2475 ; ; 66. ;
Texts in Applied Mathematics, ; 0939-2475 ; ; 66. ;
Abstract: This book is intended as a text for a one-semester course on Mathematical and Computational Neuroscience for upper-level undergraduate and beginning graduate students of mathematics, the natural sciences, engineering, or computer science. An undergraduate introduction to differential equations is more than enough mathematical background. Only a slim, high school-level background in physics is assumed, and none in biology. Topics include models of individual nerve cells and their dynamics, models of networks of neurons coupled by synapses and gap junctions, origins and functions of population rhythms in neuronal networks, and models of synaptic plasticity. An extensive online collection of Matlab programs generating the figures accompanies the book. . ;
Description: Printed edition: ; 9783319511702. ;
SpringerLink (Online service) ;




URI: http://localhost/handle/Hannan/1304
ISBN: 9783319511719 ;
9783319511702 (print) ;
More Information: XIII, 457 p. 356 illus., 186 illus. in color. ; online resource. ;
Appears in Collections:مهندسی فناوری اطلاعات

Files in This Item:
File Description SizeFormat 
9783319511719.pdf26.96 MBAdobe PDFThumbnail
Preview File
Title: An Introduction to Modeling Neuronal Dynamics
Authors: Bergers, Christoph. ;
subject: Mathematics. ;;Neurosciences. ;;Neural networks (Computer science). ;;Biomathematics. ;;Vibration. ;;Dynamical systems. ;;Dynamics. ;;Mathematics. ;;Mathematical Models of Cognitive Processes and Neural Networks. ;;Mathematical and Computational
Year: 2017
place: Cham :
Publisher: Springer International Publishing :
Imprint: Springer,
Series/Report no.: Texts in Applied Mathematics, ; 0939-2475 ; ; 66. ;
Texts in Applied Mathematics, ; 0939-2475 ; ; 66. ;
Abstract: This book is intended as a text for a one-semester course on Mathematical and Computational Neuroscience for upper-level undergraduate and beginning graduate students of mathematics, the natural sciences, engineering, or computer science. An undergraduate introduction to differential equations is more than enough mathematical background. Only a slim, high school-level background in physics is assumed, and none in biology. Topics include models of individual nerve cells and their dynamics, models of networks of neurons coupled by synapses and gap junctions, origins and functions of population rhythms in neuronal networks, and models of synaptic plasticity. An extensive online collection of Matlab programs generating the figures accompanies the book. . ;
Description: Printed edition: ; 9783319511702. ;
SpringerLink (Online service) ;




URI: http://localhost/handle/Hannan/1304
ISBN: 9783319511719 ;
9783319511702 (print) ;
More Information: XIII, 457 p. 356 illus., 186 illus. in color. ; online resource. ;
Appears in Collections:مهندسی فناوری اطلاعات

Files in This Item:
File Description SizeFormat 
9783319511719.pdf26.96 MBAdobe PDFThumbnail
Preview File