Vision loss affects millions globally, significantly leading to dependence and reduced quality of life. Many forms of vision impairment, such as those resulting from retinal degeneration, have limited treatment options. Current approaches, like retinal implants, are invasive, expensive, and require complex surgical procedures with so far very modest impact on patient well-being. The ERC OuterRetina project aims to address these challenges by developing non-invasive, flexible bioelectronic interfaces for vision restoration.
The project’s core objective is to create soft, wearable electrode systems that can stimulate the retina and elicit visual perception. We further aim to study how to optimize the stimulation to achieve rudimentary level of visual acuity. The wearable systems we develop leverage advanced materials, innovative electrode designs, and real-time biofeedback technologies to create simple solution to generate artificial functional vision. By integrating expertise in neuroscience, materials science, and electrical engineering, the project aims to overcome the technical and biological barriers that have historically limited non-invasive retinal stimulation.
Expected impact includes improved quality of life for individuals with retinal diseases, reduced healthcare costs, and expanded access to artificial vision technologies globally. The project also aims to advance the broader field of bioelectronics, opening new pathways for treating neurological disorders through non-invasive stimulation methods.