الصفحة 1
الصفحة 1
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Tutorials in Mathematical Biosciences I : Mathematical Neuroscience

Introduces some basic theories on computational neuroscience. Chapter 1 is a brief introduction to neurons, tailored to the subsequent chapters. Chapter 2 is a self-contained introduction to dynamical systems and bifurcation theory, oriented towards neuronal dynamics. The theory is illustrated with a model of Parkinson's disease. Chapter 3 reviews the theory of coupled neural oscillators observed throughout the nervous systems at all levels; it describes how oscillations arise, what pattern they take, and how they depend on excitory or inhibitory synaptic connections. Chapter 4 specializes to one particular neuronal system, namely, the auditory system. It includes a self-contained introduction, from the anatomy and physiology of the inner ear to the neuronal network that connects the hair cells to the cortex, and describes various models of subsystems.

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Sound Source Localization

The localization of sound is a fundamental requirement for all auditory systems and has motivated much research. This comprehensive volume brings together topics from many specialties that have been touched upon in other volumes of the Springer Handbook of Auditory Research. Reviewing sound source localization capacities and mechanisms in a variety of organisms, this volume provides a synthesis and update on the topic that is both original and timely. The authors treat sound source localization in a comparative context with an emphasis on modeling and computational mechanisms.

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Plasticity and Signal Representation in the Auditory System

This volume summarizes the state of development of auditory system neuroscience. This field is in an era of remarkable progress, particularly in the field of plasticity of the auditory system. New advances in understanding auditory system plasticity, based substantially on a large and growing body of results from animal experiments, are related to innumerable new insights into the physiology and pathology of speech and music perception and production generated by behavioral studies, and from the application of modern brain imaging techniques. We are living in an especially exciting period of research, marked by an almost astounding rate of advance in the development of our understanding of the hearing brain.

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Fish Bioacoustics

The study of how fish make and respond to sound has important implications for communication, physiology, behavior, and commercial techniques. Fish Bioacoustics, a new definitive volume on fish auditory systems, will interest investigators in both basic research of fish bioacoustics as well as investigators in applied aspects of fisheries and resource management. Topics cover structure, physiology, localization, and acoustic behavior as well as more applied topics such as using sound to detect and locate fish.

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Corticofugal Modulation of Sensory Information

Sensory signals reach the cerebral cortex after having made synapses in different relay stations along the sensory pathway. The flow of sensory information in subcortical relay stations is controlled by the action of precise topographic connections from the neocortex. Several lines of research indicate that the massive corticifugal system improves ongoing subcortical sensory processing and reorganizes the receptive fields in visual, auditory and somatosensory systems. In all these sensory systems cortical neurons mediate both the highly focused positive feedback to subcortical neurons with ove

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