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Na Transport: Ussing's Model
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Related lectures (32)
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Cellular Mechanisms of Brain Function
Explores cellular mechanisms of brain function, focusing on ion channels and action potentials.
Inhibitors Analysis: Amyloride & Wabahine
Explores the analysis of amyloride and wabahine inhibitors on sodium transport kinetics.
Membrane potential: Cellular mechanisms
MOOC: Cellular Mechanisms of Brain Function
Explains membrane potential, equilibrium potentials, and ion conductances' role in determining the membrane potential.
In Silico Neuroscience: Ion Channels and Neuronal Models
Explores detailed modeling of ion channels and neuronal morphologies in in silico neuroscience, covering neuron classification, ion channel kinetics, and experimental observations.
Ion Channels: Structure and Function
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Explores the biophysics of ion channels and their vital role in neuronal signaling and physiological processes.
Ion Channels: Structure and Function
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Explores the structure and function of ion channels, their classification, membrane permeability, and role in single-cell activities.
Electrophysiology: Ion Channels and Recordings
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Explores electrophysiology principles, ion channels modulation, recording techniques, and analysis of cellular activity.
Membrane Deformation: Modes and Mechanisms
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Explores membrane deformation modes, shape changes, and transport mechanisms in cells.
Computational Neuroscience: Biophysics
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Covers modern neuroscience synthesis, biophysical modeling, and brain building blocks with practical applications.
Neural Cell Membrane Dynamics
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Explores neural cell membrane dynamics, including ion channels, action potentials, myelination, and bioelectronic interfaces.
Nicotinic Receptors: Structure and Function
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Explores the structure and function of nicotinic receptors, focusing on Cys-loop receptors, ion conductance, and the effects of nicotine.
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