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 vision research, optic nerve regeneration, and bio-realistic models in the mouse visual cortex, focusing on optic nerve stimulation and visual learning.
Explores the application of computational neuroscience in neuroprosthetics, focusing on predicting intended arm movements based on spike times and the importance of systematic parameter optimization.
Explores brain circuits for sensory perception and external representation, covering thalamus communication, energy-saving mechanisms, inhibitory control, and time perception.
Explores data from the mouse primary visual cortex, focusing on visual information encoding, transformation, diversity of responses, and locomotion modulation.
Explores neuroprostheses for sensory systems, including auditory, vestibular, vision, and tactile applications, addressing the challenges of artificial vision.
Explores human vision from the retina to the visual cortex, covering topics like color vision, sensitivity to different wavelengths, and comparing human and computer vision processes.
Discusses restoring sight in age-related macular degeneration using photovoltaic technology, covering the structure of the eye, retinal signaling, and clinical trial outcomes.