• DocumentCode
    2471280
  • Title

    Testing of photolytic uncaging with intraspinal fiber optics as a basis for motor neuroprostheses

  • Author

    Scabich, Jonathan A. ; Ellis-Davies, Graham C R ; Lemay, M.A. ; Giszte, Simon F.

  • Author_Institution
    Biomed. Eng. & Sci. Inst., Drexel Univ., Philadelphia, PA, USA
  • fYear
    2002
  • fDate
    2002
  • Firstpage
    151
  • Lastpage
    152
  • Abstract
    Recently, methods have been developed that can ´cage´ neurotransmitters, limiting their ability to bind with a receptor and rendering them biologically inert until photolytic uncaging. We explored uncaging of glutamate with implanted fiber optics as a stimulation technology. The spinal cord was bathed in caged glutamate at different concentrations, and a photolysis unit projected brief, spatially concentrated bursts of light into the lumbar spinal cord. Forces generated at the ankle were measured in 3 dimensions. Responses were tested at discrete depths in the lumbar cord, with the strongest responses located in the 900 to 1100 μm range. Our results indicate feasibility of this approach for engineering a prosthesis. The advantage of this technology is that excitation, inhibition, and modulation of spinal circuits can be controlled. This technique, when used in a paralyzed individual, would allow greater freedom of movement and independence
  • Keywords
    neurophysiology; optical fibres; photolysis; prosthetics; cutaneous receptors; fiber optic uncaging; fiber optics stimulation; force responses; glutamate; intraspinal fiber optics; lumbar spinal cord; motor neuroprostheses; neurotransmitter caging; photolytic uncaging; spatially concentrated light bursts; Anatomy; Circuit testing; Force measurement; Neurotransmitters; Optical fiber testing; Optical fibers; Optical pulses; Optical transmitters; Physiology; Spinal cord;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Bioengineering Conference, 2002. Proceedings of the IEEE 28th Annual Northeast
  • Conference_Location
    Philadelphia, PA
  • Print_ISBN
    0-7803-7419-3
  • Type

    conf

  • DOI
    10.1109/NEBC.2002.999510
  • Filename
    999510