Invariants of Behavior [recurso electrónico] : Constancy and Variability in Neural Systems / by Mario Negrello.

Por: Negrello, Mario [author.]Colaborador(es): SpringerLink (Online service)Tipo de material: TextoTextoSeries Springer Series in Cognitive and Neural Systems ; 1Editor: New York, NY : Springer New York, 2011Edición: 1Descripción: XX, 252 p. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9781441988041Tema(s): Medicine | Neurosciences | Computer science | Neurobiology | Biomedicine | Neurosciences | Computation by Abstract Devices | NeurobiologyFormatos físicos adicionales: Printed edition:: Sin títuloClasificación CDD: 612.8 Clasificación LoC:RC321-580Recursos en línea: Libro electrónicoTexto
Contenidos:
1 Invariants of Behavior: Constancy and Variability in Neural Systems and Behavior -- Summary -- Acknowledgements -- Foreword -- Part I Invariants of Behavior -- 2 Introduction -- 3 Invariances in Theory -- 4 Empirical Assessments of Invariance -- 5 Modeling and Invariance -- 6 Dynamical Systems and Convergence -- 7 Neurons, Models and Invariants -- Part II Neurodynamics of Embodied Behavior -- 8 Neurodynamics and Evolutionary Robotics -- 9 Attractor Landscapes in Active Tracking -- Appendix: Learning -- Appendix: Related Work -- References -- 10 Convergent Evolution of Behavioral Function -- 11 Neural Communication: Messages between Modules.
En: Springer eBooksResumen: The study of the brain and behavior is enhanced by the discovery of invariances. Experimental brain research uncovers constancies amid variation with respect to interventions and transformations prescribed by experimental paradigms; furthermore, place cells, mirror neurons, event-related potentials, and areas differentially active in fMRI all illustrate the pervasive role of invariances in neural systems in relation to their function. Invariants of Behavior: Constancy and Variability in Neural Systems and Behavior explores the role of invariances in the study of behavior and neural systems. It analyzes invariances with respect to neural structure, functional behavior and the dynamics of neural activity. It discusses the role of empirical invariances in behavioral function as well as the appearance of invariances in computational models. In addition, it introduces terminological extensions of neurodynamics and includes a set of original robotics experiments on the evolution of the active-tracking behavior of a simulated agent.
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Existencias
Tipo de ítem Biblioteca actual Colección Signatura Copia número Estado Fecha de vencimiento Código de barras
Libro Electrónico Biblioteca Electrónica
Colección de Libros Electrónicos RC321 -580 (Browse shelf(Abre debajo)) 1 No para préstamo 372184-2001

1 Invariants of Behavior: Constancy and Variability in Neural Systems and Behavior -- Summary -- Acknowledgements -- Foreword -- Part I Invariants of Behavior -- 2 Introduction -- 3 Invariances in Theory -- 4 Empirical Assessments of Invariance -- 5 Modeling and Invariance -- 6 Dynamical Systems and Convergence -- 7 Neurons, Models and Invariants -- Part II Neurodynamics of Embodied Behavior -- 8 Neurodynamics and Evolutionary Robotics -- 9 Attractor Landscapes in Active Tracking -- Appendix: Learning -- Appendix: Related Work -- References -- 10 Convergent Evolution of Behavioral Function -- 11 Neural Communication: Messages between Modules.

The study of the brain and behavior is enhanced by the discovery of invariances. Experimental brain research uncovers constancies amid variation with respect to interventions and transformations prescribed by experimental paradigms; furthermore, place cells, mirror neurons, event-related potentials, and areas differentially active in fMRI all illustrate the pervasive role of invariances in neural systems in relation to their function. Invariants of Behavior: Constancy and Variability in Neural Systems and Behavior explores the role of invariances in the study of behavior and neural systems. It analyzes invariances with respect to neural structure, functional behavior and the dynamics of neural activity. It discusses the role of empirical invariances in behavioral function as well as the appearance of invariances in computational models. In addition, it introduces terminological extensions of neurodynamics and includes a set of original robotics experiments on the evolution of the active-tracking behavior of a simulated agent.

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