Mathematical neuroscience / Stanisław Brzychczy, Faculty of Applied Mathematics, AGH University of Science and Technology, Kraków, Poland, Roman R. Poznanski, Computation and Informatics Research Cluster, Instiutute of Research Management and Monitoring, University of Malaya, Kuala Lumpur, Malaysia.
Material type:
TextDescription: xii, 188 pages : illustrations (some color) ; 24 cmISBN: - 9780124114685
- 0124114687
- 612.80151 23
- QP357.5 .B79 2014
- 2013 I-797
- WL 20
| Cover image | Item type | Current library | Home library | Collection | Shelving location | Call number | Materials specified | Vol info | URL | Copy number | Status | Notes | Date due | Barcode | Item holds | Item hold queue priority | Course reserves | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Books
|
Headquarters Lending Library General Collection | NFIC | 612.80151 BRZ (Browse shelf(Opens below)) | Available | 0092119 |
Browsing Headquarters Lending Library shelves,Shelving location: General Collection Close shelf browser (Hides shelf browser)
|
|
|
|
|
|
|
||
| 612.79 MIL Skin./ | 612.8 BAR Essential biological psychology/ | 612.8 BIO Biological psychology/ | 612.80151 BRZ Mathematical neuroscience / | 612 CLA Physiology and anatomy for nurses and healthcare practitioners : | 612 GUY Human physiology and mechanisms of disease/ | 612 HUM Human reproduction: |
Includes bibliographical references (pages 175-185) and index.
Mathematical Neuroscience is a book for mathematical biologists seeking to discover the complexities of brain dynamics in an integrative way. It is the first research monograph devoted exclusively to the theory and methods of nonlinear analysis of infinite systems based on functional analysis techniques arising in modern mathematics. Neural models that describe the spatio-temporal evolution of coarse-grained variables-such as synaptic or firing rate activity in populations of neurons -and often take the form of integro-differential equations would not normally reflect an integrative approach. This book examines the solvability of infinite systems of reaction diffusion type equations in partially ordered abstract spaces. It considers various methods and techniques of nonlinear analysis, including comparison theorems, monotone iterative techniques, a truncation method, and topological fixed point methods. Infinite systems of such equations play a crucial role in the integrative aspects of neuroscience modeling. The first focused introduction to the use of nonlinear analysis with an infinite dimensional approach to theoretical neuroscience. Combines functional analysis techniques with nonlinear dynamical systems applied to the study of the brain. Introduces powerful mathematical techniques to manage the dynamics and challenges of infinite systems of equations applied to neuroscience modeling. --
There are no comments on this title.