Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Cellular Mechanisms of Brain Function
Graph Chatbot
Related lectures (32)
Modeling the synaptic potential
Explores the modeling of synaptic potentials and the factors influencing their amplitude.
Understanding Synaptic Transmission
Explores synaptic transmission, neurotransmitters, and neural plasticity principles.
Untitled
Untitled
Synaptic Transmission: Electrical vs Chemical
Compares electrical and chemical synapses, emphasizing their properties and behavior, including the neuromuscular junction and synapses in the CNS.
Neural System Organization
Explores the organization of the nervous system, including neuron structure, synapses, neurotransmitters, and neural circuits.
Modeling the electrical activity of the neuron
Explores the modeling of neuron electrical activity, including ion channels and concentrations, Nernst equation, and resting potential.
Synaptic Transmission: Electrical vs. Chemical
Explores the differences between electrical and chemical synapses, synaptic plasticity, and receptor behavior.
GABAergic inhibition
Explores the cellular mechanisms of GABAergic inhibition in the brain and the role of GABA receptors.
Synaptic transmission: Structure and Mechanisms
Explores the structure and function of synapses, including neurotransmitter diversity and the role of AMPA and NMDA receptors.
Synaptic Transmission: Diffusive Component
Explores the diffusive component of synaptic transmission and its impact on brain function.
Engineering Neurons: Optogenetics
Explores the engineering of neurons using light, chemicals, and sound to modulate neural activity and behavior.
Neurotransmitters: GABA and Glycine
Explores the classification and effects of GABA and Glycine neurotransmitters, including drug interactions.
Cellular Mechanisms of Brain Function
Covers the structure of a neuroscience course, focusing on cell membrane, ion channels, synaptic transmission, and brain function.
Neurotransmitters: Receptors and Effects
Explores major neurotransmitters, their effects, drug therapy, and receptor mechanisms in brain function.
Modeling synaptic transmission: Stochastic Dynamics
Explores stochastic synaptic transmission modeling, parameters, inhibitory effects, and synaptic reliability.
In vivo electrophysiology
Explores in vivo electrophysiology techniques for studying brain function through extracellular potentials and whole-cell recordings.
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.
Introduction into the module
Introduces nerve cells' electrical activity, focusing on spikes and synaptic potentials.
Computational Neuroscience: Biophysics
Covers modern neuroscience synthesis, biophysical modeling, and brain building blocks with practical applications.
Previous
Page 1 of 2
Next