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Related lectures (10)
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Membrane potential: Cellular mechanisms
Explains membrane potential, equilibrium potentials, and ion conductances' role in determining the membrane potential.
Biopotential Generation: Action Potential & Models
Covers the generation of biopotentials, focusing on action potentials and the Hodgkin-Huxley model.
Cable properties: Cellular Mechanisms of Brain Function
Explores the dynamics of membrane potential in neurons and the cable equation at steady state.
Understanding Ion Channels
Explores the fundamental concepts of ion channels, their behavior at different temperatures, and implications for brain physiology and drug studies.
DLVO Theory and Membrane Potential
Explains the electrical potential difference across cell membranes and the excitation of neurons.
Electrical Modeling of Neurons
Explores the mathematical framework and challenges of modeling neurons, discussing passive and active membrane mechanisms and the representation of the membrane as an electrical circuit.
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.
Membrane Potential: Electrical Properties of Neurons
Covers membrane potential, its measurement, and the equations governing ionic movement in neurons.
Biological Electricity: Action Potential Propagation and Modeling
Explores action potential propagation, membrane modeling, conductance, and encoding signals through action potential trains.
Bio-physical Modelling: Hodgkin Huxley Cable
Covers bio-physical modelling using the Hodgkin & Huxley equations and cable theory.
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