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Explore the revolutionary discoveries in cell and molecular biology of neurons, covering the spectrum of brain science from neural circuits to perception, cognition, and behavior. Delve into the response properties of neurons and their impact on brain functions, behavioral patterns, and cognitive processes. Discover how alterations in these properties contribute to abnormal brain functions and neuropsychiatric disorders. Engage with interdisciplinary thematic cores focusing on innovation at the boundaries of traditional disciplines, neurotechnology advancements, computational approaches, and modeling synaptic and circuit functions. Join experts like Larry Abbott, Sri Raghavachari, Rodney Douglas, and Kevan Martin to delve into cutting-edge studies on brain function, neural networks, and neuropsychiatric disorders. Utilize advanced techniques such as FMRI for assessing connectivity and developing treatments.
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‘advances discoveries that transform our understanding of brain function and translate into innovative solutions for health and society’
Cell and molecular biology of neurons The Spectrum of Brain Science Neural Circuits Perception,Cognition Behavior What are the response properties of neurons? How do these properties contribute to perception, cognition, and behavior? How are these properties generated? How do alterations in cell and circuit properties contribute to abnormal brain function?
DIBS Interdisciplinary Thematic Cores ‘promote innovative approaches to problems of nervous system function that lie at the boundaries of traditional disciplines’ Neurotechnology Developing new techniques for monitoring and controlling neural activity. Neural Circuits and Behavior Defining how the spatio-temporal activity patterns in defined populations of neurons contribute to brain function. Brain to Society Exploring the neural basis of cognitive processes that are particularly relevant to society: decision-making, communication, and social interactions. Neuropsychiatric Disorders Determining the neural basis and developing treatments for neuropsychiatric disorders: autism, depression, schizophrenia, addiction.
Application of computational approaches Neurotechnology Developing new techniques for monitoring and controlling neural activity. Neural Circuits and Behavior Modeling neural function Defining how the spatio-temporal activity patterns In defined populations of neurons contribute to brain function. Data analysis Brain to Society Exploring the neural basis of cognitive processes that are particularly relevant to society: decision-making, communication, and social interactions. Neuropsychiatric Disorders Determining the neural basis and developing treatments for neuropsychiatric disorders: autism, depression, schizophrenia, addiction.
1 2-3 4 5 6 5-12,000 synapses/pyramidal cell Application of computational approaches Modeling neural function Data analysis
Application of computational approaches Modeling synaptic function Sri Raghavachari
Application of computational approaches Modeling circuit function Rodney Douglas Kevan Martin
100 um Application of computational approaches
100 um Application of computational approaches
100 um Application of computational approaches FMRI techniques for assessing connectivity
Application of computational approaches Neurotechnology Developing new techniques for monitoring and controlling neural activity. Neural Circuits and Behavior Modeling neural function Defining how the spatio-temporal activity patterns In defined populations of neurons contribute to brain function. Data analysis Brain to Society Exploring the neural basis of cognitive processes that are particularly relevant to society: decision-making, communication and social interactions. Larry Abbott Neuropsychiatric Disorders Determining the neural basis and developing treatments for neuropsychiatric disorders: autism, depression, schizophrenia, addiction.