Free Coupon Brain Computer Interfaces, Neural Engineering, NeuroRobotics [100% OFF]

Fundamentals of Neural Recording, Neural Stimulation, & Brain-Computer Interfaces for Medical & Robotic Applications

Free Coupon Brain Computer Interfaces, Neural Engineering, NeuroRobotics [100% OFF]

Take advantage of a coupon code for the 'Brain Computer Interfaces, Neural Engineering, NeuroRobotics' course, created by Jacob A. George, available on Udemy.

This course, updated on June 06, 2025 and it is expired on June 06, 2025.

This course provides 5 hour(s) 30 minute(s) of expert-led training in English , designed to boost your Data Science skills.

Highly rated at 4.9-star stars from 52 reviews, it has already helped 1,137 students.

This exclusive coupon is shared by Anonymous, at the price 49.99 $

Don’t miss this opportunity to level up your skills!

This course will cover tools and applications in the field of Neural Engineering with an emphasis on real-time robotic applications. Neural Engineering is an interdisciplinary field that overlaps with many other areas including neuroanatomy, electrophysiology, circuit theory, electrochemistry, bioelectric field theory, biomedical instrumentation, biomaterials, computational neuroscience, computer science, robotics, human-computer interaction, and neuromuscular rehabilitation. This course is designed around the central idea that Neural Engineering is the study of transferring electromagnetic information into or out of the nervous system. With this framework, the course is divided into three broad segments: neurorecording, neurostimulation and closed-loop neuromodulation. The neurorecording segment includes: invasive and non-invasive recording techniques, signal processing, neural feature extraction, biological and artificial neural networks, and real-time control of robotic devices using neurorecordings. The neurostimulation segment includes: invasive and non-invasive stimulation techniques, signal generation, physiological responses, safety analysis, and real-time stimulation for haptic feedback and for reanimating paralyzed limbs. The closed-loop neuromodulation segment features hands-on student-led projects and a review of various neurotech companies. Example applications include bionic arms controlled by thought that restore a natural sense of touch, or neural-links that can decode a person’s thoughts to reanimate a paralyzed limb.

The course provides students with fundamental articles from the field and dozens of quizzes for students to assess their understanding and reinforce key concepts. Optional hands-on research projects are also available.