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Lecture
Bionic Prostheses: Restoring Sensory Feedback through Neuroengineering
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Neural Interfaces: Fundamentals of Neuroengineering
Explores the fundamentals of neural interfaces, covering design principles, evolution of cortical interfaces, and innovations in electrode technology.
Peripheral sensory feedback
Explores the importance and organization of sensory feedback in the peripheral nervous system, including artificial implementations.
Neural Signals and Prosthetic Control
Explores intramuscular EMG signals, targeted muscle reinnervation, and neural interfaces for prosthetic control.
Optimization of Neuroprosthetic Systems
Explores the optimization of neuroprosthetic systems, including sensory feedback restoration and neural stimulation strategies.
Sensory Feedback in Neuroprosthetics
Explores the importance of real-time sensory feedback in enhancing the control and functional impact of prosthetic hands through various neuroengineering methods.
Neuroengineering: Sensory Feedback and Prosthetic Control
Delves into sensory feedback mechanisms and biomimetic encoding for artificial limbs.
Hybrid Neural Models: Introduction and Applications
Covers hybrid neural models for neuroprosthetics, nerve stimulation optimization, and grasping restoration after spinal cord injury.
Neural Signal Recording: Electrode Types and Applications
Explores neural signal recording methods using various electrode types for in-vivo and in-vitro studies.
Neural Signals and Signal Processing
Explores neural signals, EMG control, muscle synergies, and HD-EMG for prosthetic devices.
Neural Engineering: Fundamentals and Applications
Covers neural engineering fundamentals, brain-computer interfaces, neuroprosthetics, and deep brain stimulation for enhancing human function.