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Long-term potentiation
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Related lectures (32)
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Introduction to synaptic plasticity
MOOC: Simulating a hippocampus micro-circuit
Covers synaptic plasticity, types of synapses, Hebb's postulate, LTP, LTD, and network oscillations in the hippocampus.
Synaptic plasticity: mechanisms and functions
MOOC: Cellular Mechanisms of Brain Function
Explores the cellular mechanisms of synaptic plasticity, including LTP, LTD, and STDP.
Classification of Plasticity: Short-term vs. Long-term Changes
MOOC: Neuronal Dynamics 2- Computational Neuroscience: Neuronal Dynamics of Cognition
Explores short-term and long-term synaptic changes, Hebbian learning, and the role of neuromodulators.
Presynaptic dynamics: Short-term and long-term modulation
MOOC: Cellular Mechanisms of Brain Function
Explores the modulation of presynaptic neurotransmitter release over different time scales through calcium-dependent mechanisms.
Hippocampal Modelling Overview
MOOC: Simulating a hippocampus micro-circuit
Covers hippocampal modelling, synaptic plasticity, brain diseases impact, and the importance of combining modelling with experiments.
Models of Long-Term Plasticity: Hebbian Learning
MOOC: Neuronal Dynamics 2- Computational Neuroscience: Neuronal Dynamics of Cognition
Explores Hebbian learning, synaptic plasticity, and models for long-term plasticity.
Neurotransmitters Overview
Provides an overview of neurotransmitters, their roles in sleep, addiction, and LTP, and the study of addictive behaviors.
Neuromodulators: Synaptic Plasticity and Oscillations
MOOC: Simulating a hippocampus micro-circuit
Delves into the modulation of glutamate and GABA release in the hippocampus microcircuit.
Local Learning Rules: Representations and Actions
Explores local learning rules for representations and actions, covering synaptic plasticity, reinforcement learning, and good representations.
Learning and synaptic plasticity
Covers sensory stimulation, learning, synaptic plasticity, and Hebb's postulate in neurorobotics.
Modeling the receptive field development
Covers receptive field development, self-organization principles, neuron models, and Hebbian learning.
Understanding Synaptic Transmission
Explores synaptic transmission, neurotransmitters, and neural plasticity principles.
Synaptic Plasticity: Neuronal Dynamics
MOOC: Neuronal Dynamics 2- Computational Neuroscience: Neuronal Dynamics of Cognition
Explores synaptic plasticity, including short-term and long-term changes in synaptic connections, to understand how learning and memory are facilitated.
Relationship to Neural Learning Rules
Explores the relationship between neural learning rules and weight updates based on rewards and neuron activity.
Glutamate Receptors: Functional Properties and Brain Mechanisms
Explores glutamate receptors, EPSPs, EPSCs, LTP, LTD, STDP, and dendritic spines.
Depth of Processing: Understanding Learning Through Prior Knowledge
Delves into depth of processing in learning, emphasizing the importance of engaging prior knowledge for meaningful understanding.
Neurotransmitters: Receptors and Effects
Explores major neurotransmitters, their effects, drug therapy, and receptor mechanisms in brain function.
Physiological properties of human neurons
Explores the physiological properties of human neurons, including EPSP stability and capacitance impact on spike probability and information encoding.
Hippocampus Microcircuit: Key Discoveries
MOOC: Simulating a hippocampus micro-circuit
Explores key discoveries in the hippocampus microcircuit, including anatomy, function, synaptic plasticity, LTP, LTD, and new recording techniques.
Analyzing Hebbian Learning Rule
Explores rate-based Hebbian learning, covariance rules, and weight vector growth in neural networks.
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