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Lecture
Ion Channels: Structure and Function
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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.
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.
Resting Membrane Potential
Discusses resting membrane potential, ion channels, and the Na+/K+ pump.
Ion channels: Structure and Function
MOOC: Cellular Mechanisms of Brain Function
Explores the structure and function of ion channels, including their rapid conformational changes and key features like open probability.
Biological Electricity: Action Potential Propagation and Modeling
Explores action potential propagation, membrane modeling, conductance, and encoding signals through action potential trains.
Na Transport: Ussing's Model
Discusses Ussing's model for epithelial transport and its experimental investigation.
Ion Channels
MOOC: Simulation Neurocience
Explores the profiling and behavior of ion channels, including their diversity and classes.
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.
Cellular Mechanisms of Brain Function
Explores the electrical properties of cell membranes and their role in brain function.
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.
Cellular Mechanisms of Brain Function
Explores cellular mechanisms of brain function, focusing on ion channels and action potentials.
Untitled
Micro-ElectroMechanical Systems (MEMS)
Explores Micro-ElectroMechanical Systems (MEMS) development, ion channels, patch clamp technique, drug discovery, and PDMS integration in microfluidic systems.
Plasma Membrane Selective Permeability
Explores plasma membrane permeability, osmosis, ion channels, and membrane potential in cells.
Hodgkin & Huxley model: Spike Dynamics
MOOC: Simulation Neurocience
Explores the Hodgkin & Huxley model, focusing on spike dynamics and membrane currents in excitable cells.
Untitled
Proteins: Structure, Function, and Mechanisms
Explores the structure, function, and mechanisms of proteins, enzymes, motor proteins, transport proteins, and ion channels in cellular processes.
Action potential propagation: Mechanisms and Speed
MOOC: Cellular Mechanisms of Brain Function
Explores the cellular mechanisms and speed of action potential propagation in neurons.
Membrane potential: Cellular mechanisms
MOOC: Cellular Mechanisms of Brain Function
Explains membrane potential, equilibrium potentials, and ion conductances' role in determining the membrane potential.
Voltage-gating kinetics: Na+ and K+ channels
MOOC: Cellular Mechanisms of Brain Function
Explores the voltage-gating kinetics of Na+ and K+ channels, including rapid opening and inactivation of Na+ channels.
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