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Lecture
Brain Function Mechanisms
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Related lectures (31)
Reward-based Learning: Cellular Mechanisms
MOOC: Cellular Mechanisms of Brain Function
Explores reward-based learning in neuronal networks and the role of dopamine in synaptic plasticity.
Neural Networks for Action Learning: Three-Factor Rules and Dopamine
Explores neural networks learning by reward, actor-critic structures, synaptic plasticity, and the role of dopamine in synaptic changes.
Neurotransmitters: GABA and Glycine
Explores the classification and effects of GABA and Glycine neurotransmitters, including drug interactions.
Parkinson's Disease: Basal Ganglia Circuitry
Explores the basal ganglia circuitry in Parkinson's disease, covering structure, function, dopamine role, pathology, and treatments.
Surprise, Curiosity and Reward: An Evolutionary Perspective
Explores the evolutionary perspective on surprise, curiosity, and reward, focusing on the role of primary and secondary reward signals.
Cellular Mechanisms of Brain Function
MOOC: Cellular Mechanisms of Brain Function
Series explores the biophysics of neurons and synapses, synaptic transmission, and brain function.
Building Physical Neural Networks
Discusses challenges in building physical neural networks, focusing on depth, connections, and trainability.
Learning to Find a Goal
Delves into a biologically inspired version of Reinforcement Learning, focusing on maze navigation and the implementation of spiking neurons.
Neuromorphic Computing: Concepts and Hardware Implementations
Covers neuromorphic computing, challenges in ternary and binary computing, hardware simulations of the brain, and new materials for artificial brain cells.
Peripheral sensory feedback
Explores the importance and organization of sensory feedback in the peripheral nervous system, including artificial implementations.
Neurotransmitters: Receptors and Effects
Explores major neurotransmitters, their effects, drug therapy, and receptor mechanisms in brain function.
Neural Networks for Action Learning: Brain Implementation Insights
Explores neural networks for action learning and the brain's reinforcement learning implementation.
Understanding Synaptic Transmission
Explores synaptic transmission, neurotransmitters, and neural plasticity principles.
Modeling the synaptic potential
MOOC: Simulation Neurocience
Explores the modeling of synaptic potentials and the factors influencing their amplitude.
Brain Dysfunction: Parkinson's Disease
MOOC: Cellular Mechanisms of Brain Function
Covers the prevalence and financial burden of brain disorders, focusing on Parkinson's disease and its treatments.
Synaptic transmission: Structure and Mechanisms
MOOC: Simulation Neurocience
Explores the structure and function of synapses, including neurotransmitter diversity and the role of AMPA and NMDA receptors.
Three-factor rules: DeepRL1.5A
Explains three-factor rules in policy gradient algorithms and their implementation in biological and hardware systems.
Synaptic Transmission: Diffusive Component
Explores the diffusive component of synaptic transmission and its impact on brain function.
Modeling Electrophysiology: Different Scales
MOOC: Neuroscience Reconstructed: Genetics and Brain Development
Covers modeling electrophysiology at different scales, discussing ion channels, single neurons, and microcircuits.
Biopotential Generation: Synaptic Transmission
Explores biopotential generation and synaptic transmission, including neurotransmitter release and dopamine's effects on Parkinson's disease.
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