DocumentCode
3463127
Title
A 1600-pixel Subretinal Chip with DC-free Terminals and ±2V Supply Optimized for Long Lifetime and High Stimulation Efficiency
Author
Rothermel, Albrecht ; Wieczorek, Volker ; Liu, Liu ; Stett, Alfred ; Gerhardt, Matthias ; Harscher, Alex ; Kibbel, Steffen
Author_Institution
Univ. of Ulm, Ulm
fYear
2008
fDate
3-7 Feb. 2008
Firstpage
144
Lastpage
602
Abstract
Retinal implants are developed to restore visual perception in blind patients. The retina can be stimulated from either side (epiretinal (M. Ortmanns et al., 2007) or subretinal (L. Theogarajan et al., 2006), (E. Zrenner, 2002)). With a subretinal light sensitive chip, the natural optical system of the eye is still used, allowing the patient to intuitively locate objects. The patient was 1 out of 7, who have been implanted in a clinical study in 2006 in Tuebingen, Germany (E. Zrenner et al., 2007). The space beneath the retina is limited. Either just an electrode array is placed there (L. Theogarajan et al., 2006), or a silicon chip thinned to about 70mum, or both. The experiments (E. Zrenner et al., 2007) used a device including a light-sensitive CMOS chip and separate direct stimulation electrodes. The device was connected to an external power supply by a polyimide-ribbon (comparable to (L. Theogarajan et al., 2006), however much longer), forming a flexible connection into the eyeball. Feasibility of the wired supply approach for humans was proven; no perception of the ribbon was reported by the patients. After 5 weeks, all implants were removed, and no damage of the patient´s retina was observed.
Keywords
CMOS integrated circuits; electrodes; eye; prosthetics; visual perception; DC-free terminals; blind patients; direct stimulation electrodes; electrode array; external power supply; eye; light-sensitive CMOS chip; natural optical system; polyimide-ribbon; retinal implants; subretinal light sensitive chip; visual perception; Driver circuits; Electrodes; Impedance; Implants; Rectifiers; Retina; Switches; Tin; Variable structure systems; Voltage control;
fLanguage
English
Publisher
ieee
Conference_Titel
Solid-State Circuits Conference, 2008. ISSCC 2008. Digest of Technical Papers. IEEE International
Conference_Location
San Francisco, CA
Print_ISBN
978-1-4244-2010-0
Electronic_ISBN
978-1-4244-2011-7
Type
conf
DOI
10.1109/ISSCC.2008.4523098
Filename
4523098
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