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Lecture
Modeling the synaptic potential
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Related lectures (57)
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Modeling the electrical activity of the neuron
MOOC: Simulation Neurocience
Explores the modeling of neuron electrical activity, including ion channels and concentrations, Nernst equation, and resting potential.
Understanding Synaptic Transmission
Explores synaptic transmission, neurotransmitters, and neural plasticity principles.
Rall's Cable Model
MOOC: Simulation Neurocience
Explores Rall's cable model, synaptic potential spread in dendrites, and compartmental modeling for neural simulations.
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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.
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Modeling synaptic transmission: Stochastic Dynamics
MOOC: Simulation Neurocience
Explores stochastic synaptic transmission modeling, parameters, inhibitory effects, and synaptic reliability.
Neurotransmitters: Receptors and Effects
Explores major neurotransmitters, their effects, drug therapy, and receptor mechanisms in brain function.
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Synaptic Transmission: Diffusive Component
Explores the diffusive component of synaptic transmission and its impact on brain function.
Synapses: Structure and Dynamics
MOOC: Simulation Neurocience
Explores synaptic data analysis, mapping connections, and dynamics, emphasizing the variability in synaptic responses.
Neurotransmitters: GABA and Glycine
Explores the classification and effects of GABA and Glycine neurotransmitters, including drug interactions.
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Introduction into the module
MOOC: Simulation Neurocience
Introduces nerve cells' electrical activity, focusing on spikes and synaptic potentials.
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Synapses: Neuronal Dynamics
MOOC: Neuronal Dynamics - Computational Neuroscience of Single Neurons
Explores the role of synapses in computational neuroscience and the models of excitatory and inhibitory synapses.
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