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Related lectures (32)
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Implantable Microsystems: Bioelectronics & Biomedical Applications
Explores Brain Computer Interfaces, Retina and Cochlear implants, and microelectronic systems for biomedical applications.
Neural Engineering: Fundamentals and Applications
Covers neural engineering fundamentals, brain-computer interfaces, neuroprosthetics, and deep brain stimulation for enhancing human function.
Electronic Dura Matter: Neural Implant Innovation
Showcases the innovation of eDura, a soft neural implant for spinal cord integration.
Electronic Dura Matter: Neural Implant for Spinal Repair
Introduces the eDura, a soft neural implant for spinal repair.
Cochlear Implants: Evolution and Future Perspectives
Explores the history and advancements of cochlear implants, discussing challenges, ongoing research, and future prospects in neural prostheses.
Neuroprosthetics: Wireless Interfaces
Explores wireless neural interfaces for neuroprosthetics, focusing on closed-loop systems and advanced technologies like optogenetics and ultrasound.
Sensory Neuroprostheses: Restoring Vision and Other Senses
Covers the design and implementation of sensory neuroprostheses for restoring vision and other senses.
Neuroengineering: Sensory Feedback and Prosthetic Control
Delves into sensory feedback mechanisms and biomimetic encoding for artificial limbs.
Motor Neuroprosthetics: peripheral nervous system
Explores motor neuroprosthetics, covering topics like amputation causes, EMG decoding, robotic hands, sensory feedback, and advanced control techniques.
Neural Interfaces: Fundamentals of Neuroengineering
Explores the fundamentals of neural interfaces, covering design principles, evolution of cortical interfaces, and innovations in electrode technology.