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Cognitive
neuroscience; Investigation of cognitive processing through analysis of brain
electrical signals
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Theoretical and experimental
studies of nonlinear dynamical systems.
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Application of the concepts of
synergetics and the theory of nonlinear dynamical systems to the behavioral
sciences, biology and medicine. Especially, the macroscopic modeling of the
spatiotemporal dynamics of human EEG and MEG
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Principles of spatiotemporal
pattern formation with applications to biological systems; human movement
sciences.
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Principles and mechanisms of
human sensorimotor coordination, learning and memory using functional neuroimaging
(MEG,EEG, fMRI) and the theory of self-organizing dynamical systems (coordination
dynamics)
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Music perception and cognition,
attention, auditory perception. Neural and dynamical modeling of auditory
perception and attention. Design of autonomous agents utilizing dynamical
principles
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Biophysics of ion channels, fractal
and nonlinear analysis of molecular and physiological systems
Molecular and cellular mechanisms
regulating neural development, growth, and regeneration
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Pattern dynamics of speech production
and speech perception
Functional organization of the
brainstem and its control of forebrain function; neurophysiology of sleep