Subretinal electronic chips allow blind patients to read letters and combine them to words

Author:

Zrenner Eberhart1,Bartz-Schmidt Karl Ulrich1,Benav Heval1,Besch Dorothea1,Bruckmann Anna1,Gabel Veit-Peter2,Gekeler Florian1,Greppmaier Udo3,Harscher Alex3,Kibbel Steffen3,Koch Johannes1,Kusnyerik Akos14,Peters Tobias5,Stingl Katarina1,Sachs Helmut6,Stett Alfred7,Szurman Peter1,Wilhelm Barbara5,Wilke Robert1

Affiliation:

1. Centre for Ophthalmology, University of Tübingen, Schleichstr. 12, 72076 Tübingen, Germany

2. Eye Clinic, University of Regensburg, Franz-Josef-Strauss-Allee 11, 93053 Regensburg, Germany

3. Retina Implant AG, Gerhard-Kindler-Str. 8, 72770 Reutlingen, Germany

4. Department of Ophthalmology, Semmelweis University, Tomo u. 25-29, 1083 Budapest, Hungary

5. Steinbeis Transfer Centre Eyetrial at the Centre for Ophthalmology, Schleichstr. 12-16, 72076 Tübingen, Germany

6. Klinikum Friedrichstadt, Friedrichstr. 41, 01067 Dresden, Germany

7. NMI Natural and Medical Sciences Institute at the University of Tübingen, Markwiesenstr. 55, 72770 Reutlingen, Germany

Abstract

A light-sensitive, externally powered microchip was surgically implanted subretinally near the macular region of volunteers blind from hereditary retinal dystrophy. The implant contains an array of 1500 active microphotodiodes (‘chip’), each with its own amplifier and local stimulation electrode. At the implant's tip, another array of 16 wire-connected electrodes allows light-independent direct stimulation and testing of the neuron–electrode interface. Visual scenes are projected naturally through the eye's lens onto the chip under the transparent retina. The chip generates a corresponding pattern of 38 × 40 pixels, each releasing light-intensity-dependent electric stimulation pulses. Subsequently, three previously blind persons could locate bright objects on a dark table, two of whom could discern grating patterns. One of these patients was able to correctly describe and name objects like a fork or knife on a table, geometric patterns, different kinds of fruit and discern shades of grey with only 15 per cent contrast. Without a training period, the regained visual functions enabled him to localize and approach persons in a room freely and to read large letters as complete words after several years of blindness. These results demonstrate for the first time that subretinal micro-electrode arrays with 1500 photodiodes can create detailed meaningful visual perception in previously blind individuals.

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Environmental Science,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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