Explores bioelectronic medicine through cochlear implants and vestibular prostheses, discussing inner ear anatomy, hearing loss, and neural stimulation techniques.
Explores the human hearing system, emphasizing the outer ear's role in sound capture and transmission, as well as the middle ear's function in transforming vibrations into electrical signals.
Covers the processing of visual information in the eye, the anatomy of the retina, the biochemistry of photoreceptors, and the use of implants to treat visual impairments.
Explores brain circuits for sensory perception and external representation, covering thalamus communication, energy-saving mechanisms, inhibitory control, and time perception.
Explores the principles and applications of stereolithography in additive manufacturing, covering topics such as equipment, resolution, build speed, and cost comparison.
Covers auditory and vestibular neuroprostheses, focusing on their principles, applications, and the impact on quality of life for individuals with sensory impairments.
Discusses restoring sight in age-related macular degeneration using photovoltaic technology, covering the structure of the eye, retinal signaling, and clinical trial outcomes.
Explores neuroprostheses for sensory systems, including auditory, vestibular, vision, and tactile applications, addressing the challenges of artificial vision.
Explores bioelectronics, types of blindness, and retinal implants for restoring vision, covering challenges and advancements in artificial sight technologies.