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Reconstruction and simulation strategies
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Related lectures (43)
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.
Theory of Decision Dynamics
MOOC: Neuronal Dynamics 2- Computational Neuroscience: Neuronal Dynamics of Cognition
Explores decision dynamics in computational neuroscience, focusing on competitive models and effective 2-dimensional interactions between populations.
Biopotential Generation: Neuron and Resting Potential
Explores biopotential generation, neuron structure, resting potential, and membrane properties.
Membrane Potential: Electrical Properties of Neurons
Covers membrane potential, its measurement, and the equations governing ionic movement in neurons.
Reversal potential and Nernst equation
MOOC: Neuronal Dynamics - Computational Neuroscience of Single Neurons
Explores the reversal potential and Nernst equation in computational neuroscience, focusing on ion channels and neuron biophysics.
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.
Resting Membrane Potential
Discusses resting membrane potential, ion channels, and the Na+/K+ pump.
Colloid Stability: DLVO Theory and Membrane Potential
Explores the DLVO theory and membrane potential to understand colloid stability and forces between charged surfaces.
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.
Membrane potential: Cellular mechanisms
MOOC: Cellular Mechanisms of Brain Function
Explains membrane potential, equilibrium potentials, and ion conductances' role in determining the membrane potential.
Neural Signals: Properties and Mechanisms
Explores neural signals, nerve properties, neuron building blocks, and resting potential mechanisms.
Neural Signals: Properties and Recordings
Explores the mechanical and electrical properties of neural tissues, including the brain and spinal cord, as well as the recording of neural signals using various techniques.
Electricity in Cells
Explores the physical basis of signal propagation in neurons, focusing on membrane potential setup and ion channels.
Cellular Mechanisms of Brain Function
Explores the electrical properties of cell membranes and their role in brain function.
DLVO Theory and Electrochemistry
Explores DLVO theory for colloid stability and membrane potential, along with dynamic electrochemistry concepts like galvanic cells and Nernst's law.
Plasma Membrane Selective Permeability
Explores plasma membrane permeability, osmosis, ion channels, and membrane potential in cells.
Biological Electricity: Action Potential Propagation and Modeling
Explores action potential propagation, membrane modeling, conductance, and encoding signals through action potential trains.
Scientific Computing in Neuroscience
Explores the history and tools of scientific computing in neuroscience, emphasizing the simulation of neurons and networks.
Chemical Equilibria and Reactivity
Explores chemical equilibria, redox reactions, Nernst equation, electrochemical cells, pH influence, and membrane potential.
Cable properties: Cellular Mechanisms of Brain Function
MOOC: Cellular Mechanisms of Brain Function
Explores the dynamics of membrane potential in neurons and the cable equation at steady state.
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