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Biological Electricity: Action Potential Propagation and Modeling
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Related lectures (59)
Electricity in Cells
Explores the physical basis of signal propagation in neurons, focusing on membrane potential setup and ion channels.
Resting Membrane Potential
Discusses resting membrane potential, ion channels, and the Na+/K+ pump.
Action Potentials and Electrical Excitability
Explores the generation and propagation of action potentials in neurons, including the historical significance of Hodgkin & Huxley's work.
Untitled
Ion Channels: Structure and Function
Explores the structure, function, and classification of ion channels, their role in brain function, and their significance in various diseases.
Cellular Mechanisms of Brain Function
Explores the electrical properties of cell membranes and their role in brain function.
Untitled
Membrane Potential: Electrical Properties of Neurons
Covers membrane potential, its measurement, and the equations governing ionic movement in neurons.
Plasma Membrane Selective Permeability
Explores plasma membrane permeability, osmosis, ion channels, and membrane potential in cells.
Biopotential Generation: Neuron and Resting Potential
Explores biopotential generation, neuron structure, resting potential, and membrane properties.
Action potential propagation: Mechanisms and Speed
MOOC: Cellular Mechanisms of Brain Function
Explores the cellular mechanisms and speed of action potential propagation in neurons.
Biophysical Understanding of Neuronal Electrical Behavior
Explores the biophysical understanding of neuronal electrical behavior, including challenges in modeling neurons, the generation of action potentials, and the impact of dendritic structure on firing patterns.
Membrane potential: Cellular mechanisms
MOOC: Cellular Mechanisms of Brain Function
Explains membrane potential, equilibrium potentials, and ion conductances' role in determining the membrane potential.
Untitled
Cellular Mechanisms of Brain Function
Explores cellular mechanisms of brain function, focusing on ion channels and action potentials.
Action Potentials: Mechanisms and Propagation
Explains the mechanisms of action potentials and their propagation in neurons, focusing on ion channels and the role of myelination.
The action potential
MOOC: Cellular Mechanisms of Brain Function
Covers the Hodgkin and Huxley model for ion conductance and the ionic basis of the action potential.
Ion Channels: Structure and Function
Covers the role of ion channels in biological processes, from bacterial resistance to neuronal signaling and pain modulation.
Voltage-gated channels
MOOC: Cellular Mechanisms of Brain Function
Explores the cellular mechanisms of brain function through voltage-gated ion channels and their role in regulating membrane potential.
Hodgkin & Huxley model: Spike Dynamics
MOOC: Simulation Neurocience
Explores the Hodgkin & Huxley model, focusing on spike dynamics and membrane currents in excitable cells.
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