DocumentCode
992090
Title
Designing the Optical Interface of a Transcutaneous Optical Telemetry Link
Author
Ackermann, D. Michael, Jr. ; Smith, Brian ; Wang, Xiao-Feng ; Kilgore, Kevin L. ; Peckham, P. Hunter
Author_Institution
Case Western Reserve Univ., Cleveland
Volume
55
Issue
4
fYear
2008
fDate
4/1/2008 12:00:00 AM
Firstpage
1365
Lastpage
1373
Abstract
Optical telemetry has long been an option for transcutaneous data transfer and has been used in various types of implanted systems. This telemetry modality and the efficiency of these optical links are becoming ever more important as higher bandwidth sources such as cortical recording arrays are being implemented in implanted systems. The design of the transmitter-skin-receiver interface (the ldquooptical interfacerdquo) is paramount to the operation of a transcutaneous optical telemetry link. This interface functions to achieve sufficient receiver signal power for data communication. This paper describes a mathematical analysis and supporting data that quantitatively describes the relationship between the primary interface design parameters. These parameters include the thickness of the skin through which the light is transmitted, the size of the integration area of the optics, the degree of transmitter-receiver misalignment, the efficiency of the optics system, and the emitter power. The particular combination of these parameters chosen for the hardware device will determine the receiver signal power and, therefore, the data quality for the link. This paper demonstrates some of the tradeoffs involved in the selection of these design parameters and provides suggestions for link design. This analysis may also be useful for transcutaneous optical powering systems.
Keywords
bio-optics; biomedical telemetry; data communication; mathematical analysis; optical design techniques; optical links; optical receivers; optical transmitters; skin; cortical recording arrays; data communication; light transmission; mathematical analysis; optical interface design; optical powering systems; transcutaneous optical telemetry link; transmitter-receiver misalignment; transmitter-skin-receiver interface; Bandwidth; Integrated optics; Optical arrays; Optical design; Optical fiber communication; Optical receivers; Optical recording; Optical transmitters; Stimulated emission; Telemetry; Biomedical telemetry; cortical interfacing; efficiency; link design; misalignment; optics; power transfer; skin; transcutaneous; Animals; Computer Simulation; Computer-Aided Design; Equipment Design; Equipment Failure Analysis; Light; Lighting; Models, Biological; Optics; Radiation Dosage; Radiometry; Scattering, Radiation; Skin Physiology; Swine; Telemetry;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2007.913411
Filename
4390963
Link To Document