• DocumentCode
    1037714
  • Title

    Thermal elevation in the human eye and head due to the operation of a retinal prosthesis

  • Author

    Gosalia, Keyoor ; Weiland, James ; Humayun, Mark ; Lazzi, Gianluca

  • Author_Institution
    North Carolina State Univ., Raleigh, NC, USA
  • Volume
    51
  • Issue
    8
  • fYear
    2004
  • Firstpage
    1469
  • Lastpage
    1477
  • Abstract
    An explicit finite-difference time-domain formulation of the bio-heat equation is employed with a three-dimensional head eye model to evaluate the temperature increase in the eye and surrounding head tissues due to the operation of the implanted stimulator IC chip of a retinal prosthesis designed to restore partial vision to the blind. As a first step, a validation of the thermal model and method used is carried out by comparison with in vivo measurements of intraocular heating performed in the eyes of dogs. Induced temperature increase in the eye and surrounding tissues is then estimated for several different operational conditions of the implanted chip. In the vitreous cavity, temperature elevation of 0.26°C is observed after 26 min for a chip dissipating 12.4 mW when positioned in the mid-vitreous cavity while it is 0.16°C when the chip is positioned in the anterior portion between the eye´s ciliary muscles. Corresponding temperature rises observed on chip are 0.82°C for both the positions of the chip. A comprehensive account of temperature elevations in different tissues under different operational conditions is presented.
  • Keywords
    biothermics; dosimetry; eye; finite difference time-domain analysis; integrated circuits; muscle; physiological models; prosthetics; 12.4 mW; 26 min; IC chip; bio-heat equation; ciliary muscles; dog eye; dosimetry; finite-difference time-domain formulation; head; human eye; in vivo measurements; intraocular heating; mid-vitreous cavity; retinal prosthesis; thermal elevation; three-dimensional head eye model; Equations; Finite difference methods; Humans; In vivo; Integrated circuit modeling; Prosthetics; Retina; Semiconductor device measurement; Temperature; Time domain analysis; Adult; Animals; Body Temperature; Computer Simulation; Dogs; Head; Heat; Humans; Male; Models, Biological; Ocular Physiology; Organ Specificity; Prostheses and Implants; Radiation Dosage; Radiometry; Reproducibility of Results; Retinal Diseases; Sensitivity and Specificity; Telemetry; Thermal Conductivity; Thermography;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/TBME.2004.827548
  • Filename
    1315871