• DocumentCode
    1063342
  • Title

    What does the eye tell the brain?: Development of a system for the large-scale recording of retinal output activity

  • Author

    Litke, A.M. ; Bezayiff, N. ; Chichilnisky, E.J. ; Cunningham, W. ; Dabrowski, W. ; Grillo, A.A. ; Grivich, M. ; Grybos, P. ; Hottowy, P. ; Kachiguine, S. ; Kalmar, R.S. ; Mathieson, K. ; Petrusca, D. ; Rahman, M. ; Sher, A.

  • Author_Institution
    Santa Cruz Inst. for Particle Phys., Univ. of California, Santa Cruz, CA, USA
  • Volume
    51
  • Issue
    4
  • fYear
    2004
  • Firstpage
    1434
  • Lastpage
    1440
  • Abstract
    A multielectrode array system has been developed to study how the retina processes and encodes visual images. This system can simultaneously record the extracellular electrical activity from hundreds of retinal output neurons as a dynamic visual image is focused on the input neurons. The retinal output signals detected can be correlated with the visual input to study the neural code used by the eye to send information about the visual world to the brain. The system consists of the following components: 1) a 32 × 16 rectangular array of 512 planar microelectrodes with a sensitive area of 1.7 mm2; the electrode spacing is 60 μm and the electrode diameter is 5 μm (hexagonal arrays with 519 electrodes are under development); 2) eight 64-channel custom-designed integrated circuits to platinize the electrodes and ac couple the signals; 3) eight 64-channel integrated circuits to amplify, band-pass filter, and analog multiplex the signals; 4) a data acquisition system; and 5) data processing software. This paper will describe the design of the system, the experimental and data analysis techniques, and some first results with live retina. The system is based on techniques and expertise acquired in the development of silicon microstrip detectors for high-energy physics experiments.
  • Keywords
    analogue integrated circuits; band-pass filters; biomedical electrodes; brain; data acquisition; eye; microelectrodes; neural nets; neurophysiology; position sensitive particle detectors; silicon radiation detectors; visual evoked potentials; 64-channel custom-designed integrated circuits; analog integrated circuits; band-pass filter; biomedical electrodes; brain; data acquisition system; data analysis techniques; data processing software; dynamic visual image; electrode spacing; extracellular electrical activity; hexagonal arrays; high-energy physics experiments; image processing; input neurons; large-scale recording; multielectrode array system; neural code; neural networks; planar microelectrodes; rectangular array; retinal output activity; retinal output neurons; sensitive area; silicon microstrip detectors; visual images encoding; visual system; Analog integrated circuits; Coupling circuits; Electrodes; Extracellular; Large-scale systems; Microelectrodes; Neurons; Retina; Signal detection; Signal processing;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2004.832706
  • Filename
    1323709