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Light-controlled biphasic current stimulator IC using CMOS image sensors for high-resolution retinal prosthesis and in vitro experimental results with rd1 mouse

  • Sungjin Oh
  • , Jae Hyun Ahn
  • , Sangmin Lee
  • , Hyoungho Ko
  • , Jong Mo Seo
  • , Yong Sook Goo
  • , Dong Il Dan Cho

Research output: Contribution to journalArticlepeer-review

24 Citations (Scopus)

Abstract

Retinal prosthetic devices stimulate retinal nerve cells with electrical signals proportional to the incident light intensities. For a high-resolution retinal prosthesis, it is necessary to reduce the size of the stimulator pixels as much as possible, because the retinal nerve cells are concentrated in a small area of approximately 5, mm × 5, mm. In this paper, a miniaturized biphasic current stimulator integrated circuit is developed for subretinal stimulation and tested in vitro. The stimulator pixel is miniaturized by using a complementary metal-oxide-semiconductor (CMOS) image sensor composed of three transistors. Compared to a pixel that uses a four-transistor CMOS image sensor, this new design reduces the pixel size by 8.3%. The pixel size is further reduced by simplifying the stimulation-current generating circuit, which provides a 43.9% size reduction when compared to the design reported to be the most advanced version to date for subretinal stimulation. The proposed design is fabricated using a 0.35 μm bipolar-CMOS-DMOS process. Each pixel is designed to fit in a 50, μm × 55, μm area, which theoretically allows implementing more than 5000 pixels in the 5, mm × 5, mm area. Experimental results show that a biphasic current in the range of 0 to 300 μA at 12 V can be generated as a function of incident light intensities. Results from in vitro experiments with rd1 mice indicate that the proposed method can be effectively used for retinal prosthesis with a high resolution.

Original languageEnglish
Article number6849930
Pages (from-to)70-79
Number of pages10
JournalIEEE Transactions on Biomedical Engineering
Volume62
Issue number1
DOIs
Publication statusPublished - 1 Jan 2015

Bibliographical note

Publisher Copyright:
© 2014 IEEE.

Keywords

  • Biphasic current stimulator
  • CMOS image sensor
  • High-resolution retinal prosthesis
  • Light-controlled stimulation generator
  • Retina stimulator circuit

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