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1.: Mathematical neuroscience / Alla Borisyuk ... [et al.]
1.: Mathematical neuroscience / Alla Borisyuk ... [et al.]
Pubbl/distr/stampa Berlin, : Springer, 2005
Descrizione fisica IX, 170 p. ; 24 cm
Soggetto topico 34C23 - Bifurcation theory for ordinary differential equation [MSC 2020]
37N25 - Dynamical systems in biology [MSC 2020]
92C20 - Neural biology [MSC 2020]
92C37 - Cell biology [MSC 2020]
35K57 - Reaction-diffusion equations [MSC 2020]
34C25 - Periodic solutions to ordinary differential equation [MSC 2020]
35Qxx - Partial differential equations of mathematical physics and other areas of application [MSC 2020]
34C15 - Nonlinear oscillations and coupled oscillators for ordinary differential equation [MSC 2020]
34C10 - Oscillation theory, zeros, disconjugacy and comparison theory for ordinary differential equation [MSC 2020]
34C37 - Homoclinic and heteroclinic solutions to ordinary differential equation [MSC 2020]
34C55 - Hysteresis for ordinary differential equation [MSC 2020]
Soggetto non controllato Anatomy
Auditory system
Computational Neurosciences
Cortex
Dynamical systems
Neural oscillations
Neuronal Dynamics
Neurons
Ordinary differential equations
Partial differential equations
Physiology
ISBN 978-35-403-1544-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Titolo uniforme
Record Nr. UNICAMPANIA-VAN0061442
Berlin, : Springer, 2005
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
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1: Mathematical neuroscience / lla Borisyuk ... [et al.]
1: Mathematical neuroscience / lla Borisyuk ... [et al.]
Pubbl/distr/stampa erlin, : pringer, , 005.
Descrizione fisica X, 170 p. ; 4 cm.
Soggetto topico 34C10 - Oscillation theory, zeros, disconjugacy and comparison theory for ordinary differential equation [MSC 2020]
34C15 - Nonlinear oscillations and coupled oscillators for ordinary differential equation [MSC 2020]
34C23 - Bifurcation theory for ordinary differential equation [MSC 2020]
34C25 - Periodic solutions to ordinary differential equation [MSC 2020]
34C37 - Homoclinic and heteroclinic solutions to ordinary differential equation [MSC 2020]
34C55 - Hysteresis for ordinary differential equation [MSC 2020]
35K57 - Reaction-diffusion equations [MSC 2020]
35Qxx - Partial differential equations of mathematical physics and other areas of application [MSC 2020]
37N25 - Dynamical systems in biology [MSC 2020]
92C20 - Neural biology [MSC 2020]
92C37 - Cell biology [MSC 2020]
Soggetto non controllato Anatomy
Auditory System
Computational Neurosciences
Cortex
Dynamical systems
Neural oscillations
Neuronal Dynamics
Neurons
Ordinary differential equations
Partial differential equations
Physiology
ISBN 978-35-403-1544-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Titolo uniforme
Record Nr. UNICAMPANIA-VAN00061442
erlin, : pringer, , 005.
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
Opac: Controlla la disponibilità qui
Competition and Cooperation in Neural Nets : Proceedings of the U.S.-Japan Joint Seminar held at Kyoto, Japan February 15–19, 1982 / edited by S. Amari, M. A. Arbib
Competition and Cooperation in Neural Nets : Proceedings of the U.S.-Japan Joint Seminar held at Kyoto, Japan February 15–19, 1982 / edited by S. Amari, M. A. Arbib
Pubbl/distr/stampa Berlin, : Springer, 1982
Descrizione fisica xiv, 441 p. ; 24 cm
Soggetto topico 92-XX - Biology and other natural sciences [MSC 2020]
00Bxx - Conference proceedings and collections of articles [MSC 2020]
Soggetto non controllato Behavior
Cortex
Information Processing
Neural mechanisms
Neural networks
Neurocybernetics
Neurons
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNICAMPANIA-VAN0262011
Berlin, : Springer, 1982
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
Opac: Controlla la disponibilità qui
Competition and Cooperation in Neural Nets : Proceedings of the U.S.-Japan Joint Seminar held at Kyoto, Japan February 15–19, 1982 / edited by S. Amari, M. A. Arbib
Competition and Cooperation in Neural Nets : Proceedings of the U.S.-Japan Joint Seminar held at Kyoto, Japan February 15–19, 1982 / edited by S. Amari, M. A. Arbib
Pubbl/distr/stampa Berlin, : Springer, 1982
Descrizione fisica xiv, 441 p. ; 24 cm
Soggetto topico 00Bxx - Conference proceedings and collections of articles [MSC 2020]
92-XX - Biology and other natural sciences [MSC 2020]
Soggetto non controllato Behavior
Cortex
Information Processing
Neural Mechanisms
Neural Networks
Neurocybernetics
Neurons
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto The human brain, wi th its hundred billion or more neurons, is both one of the most complex systems known to man and one of the most important. The last decade has seen an explosion of experimental research on the brain, but little theory of neural networks beyond the study of electrical properties of membranes and small neural circuits. Nonetheless, a number of workers in Japan, the United States and elsewhere have begun to contribute to a theory which provides techniques of mathematical analysis and computer simulation to explore properties of neural systems containing immense numbers of neurons. Recently, it has been gradually recognized that rather independent studies of the dynamics of pattern recognition, pattern format::ion, motor control, self-organization, etc. , in neural systems do in fact make use of common methods. We find that a "competition and cooperation" type of interaction plays a fundamental role in parallel information processing in the brain. The present volume brings together 23 papers presented at a U. S. -Japan Joint Seminar on "Competition and Cooperation in Neural Nets" which was designed to catalyze better integration of theory and experiment in these areas. It was held in Kyoto, Japan, February 15-19, 1982, under the joint sponsorship of the U. S. National Science Foundation and the Japan Society for the Promotion of Science. Participants included brain theorists, neurophysiologists, mathematicians, computer scientists, and physicists. There are seven papers from the U. S.
Record Nr. UNICAMPANIA-VAN00262011
Berlin, : Springer, 1982
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
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Intrinsic Geometry of Biological Surface Growth / Philip H. Todd
Intrinsic Geometry of Biological Surface Growth / Philip H. Todd
Autore Todd, Philip H.
Pubbl/distr/stampa Berlin, : Springer, 1986
Descrizione fisica iv, 132 p. ; 24 cm
Soggetto topico 92B05 - General biology and biomathematics [MSC 2020]
92-XX - Biology and other natural sciences [MSC 2020]
53A05 - Surfaces in Euclidean and related space [MSC 2020]
Soggetto non controllato Biology
Biomathematics
Brain
Cortex
Development
Differential geometry
Geometry
Growth
Mathematical biology
biological
experiment
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNICAMPANIA-VAN0263839
Todd, Philip H.  
Berlin, : Springer, 1986
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
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Intrinsic Geometry of Biological Surface Growth / Philip H. Todd
Intrinsic Geometry of Biological Surface Growth / Philip H. Todd
Autore Todd, Philip H.
Pubbl/distr/stampa Berlin, : Springer, 1986
Descrizione fisica iv, 132 p. ; 24 cm
Soggetto topico 53A05 - Surfaces in Euclidean and related space [MSC 2020]
92-XX - Biology and other natural sciences [MSC 2020]
92B05 - General biology and biomathematics [MSC 2020]
Soggetto non controllato Biological
Biology
Biomathematics
Brain
Cortex
Development
Differential geometry
Geometry
Growth
Mathematical biology
experiment
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto 1.1 General Introduction The work which comprises this essay formed part of a multidiscip­ linary project investigating the folding of the developing cerebral cortex in the ferret. The project as a whole combined a study, at the histological level, of the cytoarchitectural development concom­ itant with folding and a mathematical study of folding viewed from the perspective of differential geometry. We here concentrate on the differential geometry of brain folding. Histological results which have some significance to the geometry of the cortex are re­ ferred to, but are not discussed in any depth. As with any truly multidisciplinary work, this essay has objectives which lie in each of its constituent disciplines. From a neuroana­ tomical point of view, the work explores the use of the surface geo­ metry of the developing cortex as a parameter for the underlying growth process. Geometrical parameters of particular interest and theoretical importance are surface curvatures. Our experimental portion reports the measurement of the surface curvature of the ferret brain during the early stages of folding. The use of sur­ face curvatures and other parameters of differential geometry in the formulation of theoretical models of cortical folding is dis­ cussed.
Record Nr. UNICAMPANIA-VAN00263839
Todd, Philip H.  
Berlin, : Springer, 1986
Materiale a stampa
Lo trovi qui: Univ. Vanvitelli
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The Role of Glia in Plasticity and Behavior
The Role of Glia in Plasticity and Behavior
Autore Tycho Hoogland
Pubbl/distr/stampa Frontiers Media SA, 2015
Descrizione fisica 1 online resource (104 p.)
Collana Frontiers Research Topics
Soggetto topico Neurosciences
Soggetto non controllato Astrocytes
Behavior
C. elegans
Cerebellum
Cortex
DREADD
glia
Gq
Hippocampus
plasticity
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910136803103321
Tycho Hoogland  
Frontiers Media SA, 2015
Materiale a stampa
Lo trovi qui: Univ. Federico II
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