DocumentCode
1092887
Title
A Comparison of Two and Three Dimensional Dipole Antennas for an Implantable Retinal Prosthesis
Author
Soora, Shruthi ; Gosalia, Keyoor ; Humayun, Mark S. ; Lazzi, Gianluca
Author_Institution
Sony Ericsson, Research Triangle Park
Volume
56
Issue
3
fYear
2008
fDate
3/1/2008 12:00:00 AM
Firstpage
622
Lastpage
629
Abstract
The feasibility is investigated using three dimensional folded dipole antennas as a data-telemetry implantable receiving antenna in a dual-unit retinal prosthesis to restore partial vision to the blind. Three dimensional designs are explored in an effort to enhance certain antenna characteristics such as bandwidth and maximum gain while reducing the planar footprint size in comparison to its two dimensional equivalent. The current vector alignment between the three dimensional layers are examined through folding and rotating the dipole arms with respect to each other to fully optimize the antenna´s characteristics. The performance of the 2D and 3D antennas were compared in simulations and further examined by fabricating and characterizing the performance in a transmit/ receive system in air and inside eye phantoms. Results show that three-dimensional antennas can provide larger bandwidth while being physically smaller than the correspondent two-dimensional ones, thus providing larger channel capacity that could lead to a system with an increased number of stimulating electrodes.
Keywords
biomedical telemetry; dipole antennas; eye; prosthetics; receiving antennas; channel capacity; data-telemetry implantable receiving antenna; eye phantom; implantable retinal prosthesis; three dimensional dipole antennas; two dimensional dipole antennas; Arm; Bandwidth; Channel capacity; Dipole antennas; Electrodes; Imaging phantoms; Prosthetics; Receiving antennas; Retina; Transmitting antennas; Current vector alignment; implantable antenna; meander line antenna; miniature antenna; retinal prosthesis; three dimensional (3D) antenna;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2008.916889
Filename
4463912
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