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Lecture
Ion Channels: Structure and Function
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Membrane potential: Cellular mechanisms
Explains membrane potential, equilibrium potentials, and ion conductances' role in determining the membrane potential.
Understanding Neuron Electrical Properties: Ion Transport Mechanisms
Covers the electrical properties of neurons, focusing on ion transport mechanisms and their role in generating electrical signals.
Hodgkin & Huxley model: Spike Dynamics
Explores the Hodgkin & Huxley model, focusing on spike dynamics and membrane currents in excitable cells.
Biological Electricity: Action Potential Propagation and Modeling
Explores action potential propagation, membrane modeling, conductance, and encoding signals through action potential trains.
Introduction into the module
Introduces nerve cells' electrical activity, focusing on spikes and synaptic potentials.
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Covers modern neuroscience synthesis, biophysical modeling, and brain building blocks with practical applications.
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Explores the biophysical understanding of neuronal behavior, focusing on action potentials, neuron modeling challenges, and dendritic inhibition.
Nicotinic Receptors: Structure and Function
Explores the structure and function of nicotinic receptors, focusing on Cys-loop receptors, ion conductance, and the effects of nicotine.
Membrane Structure: Gorter & Grendel Experiment
Delves into the Gorter & Grendel experiment on plasma membrane structure using red blood cells.