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In Silico Neuroscience: Transegic Mice and Optogenetics
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Related lectures (35)
Approaches and Rationale of Simulation Neuroscience
MOOC: Simulation Neurocience
Explores the overview, rationale, and strategies of simulation neuroscience, emphasizing the challenges of reconstructing and simulating the brain.
Observing the Brain: Neuroimaging Basics
Explores neuroimaging basics, brain network scales, connectivity, history, and physics, emphasizing the importance of understanding data at different scales.
Scientific Computing in Neuroscience
Explores the history and tools of scientific computing in neuroscience, emphasizing the simulation of neurons and networks.
Performing a search in the Allen Brain Atlas
Covers the tutorial on performing a search in the Allen Brain Atlas, exploring gene expression data.
Neural Signals and Signal Processing
Explores neuronal signals, brain organization, measurement techniques, and MRI principles.
Fundamentals of Brain Connectomics
Introduces the basics of brain connectomics, including terminology, data preprocessing, functional MRI, connectivity measures, and modular structure.
Non-invasive Transcranial Neuromodulation: Stimulation Techniques
Explores the history and techniques of non-invasive transcranial neuromodulation using magnetic and electric stimulation.
Motor Neuroprosthetics: Brain-Machine Interfaces
Explores Brain-Machine Interfaces for motor control and communication using neural signals.
In Silico Neuroscience: Data Reproducibility and Reusability
Emphasizes data reproducibility and reusability in in silico neuroscience, focusing on neuroinformatics tools and methods.
Data available from the Allen human brain atlases
Covers the data available from the Allen human brain atlases, including gene expression analysis and the BrainSpan Atlas.
Blue Brain: Neocortical Microcircuitry
Covers the Blue Brain project's history, neocortical microcircuitry, neuron morphologies, and ion channel behavior.
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.
Introduction into the module
MOOC: Simulation Neurocience
Introduces nerve cells' electrical activity, focusing on spikes and synaptic potentials.
Concluding remarks
MOOC: Cellular Mechanisms of Brain Function
Summarizes the course on brain function, highlighting progress and future directions.
Optogenetics: Probing Neuronal Activity with Light
Explores optogenetics, genetically-encoded tools, and clinical applications in probing neuronal activity with light.
Neurosciences I: Molecular Neuroscience and Neurodegeneration
Covers molecular neuroscience, neurodegeneration, cell types, neuron structure, and history of neuroscience breakthroughs.
Spinal Cord Injuries: Neural Recording Systems
Explores the consequences of spinal cord injuries and the development of wireless neural recording systems.
Neural Signals and Signal Processing
Explores neural signals, brain imaging techniques, and brain organization, emphasizing the importance of understanding brain imaging methods and measuring brain signals noninvasively.
Untitled
Dynamic Functional Connectivity: Fundamentals
Covers the fundamentals of dynamic functional connectivity in the human brain, exploring challenges and analysis methods.
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