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Lecture
Cellular Mechanisms of Brain Function
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Related lectures (47)
Cellular Mechanisms of Brain Function
Covers the structure of a neuroscience course, focusing on cell membrane, ion channels, synaptic transmission, and brain function.
Brain function and behavior
MOOC: Cellular Mechanisms of Brain Function
Investigates the causal mechanisms of behavior through brain function at the neuronal level.
Understanding Neurorobotics
Explores the link between intelligence, the brain, and behavior through neurorobotics.
Sensorimotor Interactions
MOOC: Cellular Mechanisms of Brain Function
Delves into the cellular mechanisms of sensorimotor interactions in the brain, emphasizing whisker movement control.
Understanding Neuroscience
MOOC: Neuroscience Reconstructed: Genetics and Brain Development
Explores the multidisciplinary nature of modern neuroscience and its impact on brain function.
Controlling Behavior in Animals and Robots
Explores embodied behavioral control in animals and robots through group presentations and hands-on exercises.
In vivo electrophysiology
MOOC: Cellular Mechanisms of Brain Function
Explores in vivo electrophysiology techniques for studying brain function through extracellular potentials and whole-cell recordings.
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.
Controlling Brain Function: Optogenetic Insights
MOOC: Cellular Mechanisms of Brain Function
Delves into optogenetic techniques using Channelrhodopsin-2 for precise neuronal control and behavior modulation.
Neuroscience: Understanding the Brain
MOOC: Neuroscience Reconstructed: Genetics and Brain Development
Delves into the study of the brain and nervous system, exploring their influence on thoughts, emotions, and behavior.
Motor Control in Vertebrates
Explores the hierarchical organization of motor control in vertebrates and layered control architectures.
Brain Function: Experiments and Mechanisms
Covers key brain function experiments, hypothesis falsification, brain imaging, calcium measurement, and optogenetic tools.
Neural Signals and Signal Processing: Hemodynamic Imaging
Explores hemodynamic imaging techniques to measure brain activity and understand brain structure and function.
Introduction into Data Tools and Atlases: Allen Institute Overview
Introduces the Allen Institute's brain atlases, genetic tools, connectivity analysis, and computational models for understanding brain function.
Microcircuit Modeling: Hippocampus Insights
MOOC: Simulating a hippocampus micro-circuit
Covers the simulation of a hippocampus microcircuit for understanding brain function and behavior.
Motivation for Studying the Electrical Brain
MOOC: Simulation Neurocience
Explores the motivation behind studying brain electrical activity and successful Deep Brain Stimulation in Parkinson's patients.
Observing the Brain: Neuroimaging Basics
Explores neuroimaging basics, brain network scales, connectivity, history, and physics, emphasizing the importance of understanding data at different scales.
Optogenetics: Probing Neuronal Activity with Light
Explores optogenetics, genetically-encoded tools, and clinical applications in probing neuronal activity with light.
Behavior: Neuroscience and Embodiment
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Explores the link between behavior, neuroscience, and embodiment in shaping movement and understanding brain function.
Introduction to Systems Neuroscience: Memory Systems Overview
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Introduces systems neuroscience, focusing on neural circuits, memory systems, and course logistics.
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