DocumentCode
1339491
Title
Microwave tomography: theoretical and experimental investigation of the iteration reconstruction algorithm
Author
Semenov, Serguei Y. ; Bulyshev, Alexander E. ; Souvorov, Alexander E. ; Svenson, Robert H. ; Sizov, Yuri E. ; Vorisov, V.Y. ; Posukh, Vitaly G. ; Kozlov, Igor M. ; Nazarov, Alexey G. ; Tatsis, AnGeorge P.
Author_Institution
Laser & Appl. Technol. Lab., Carolinas Med. Center, Charlotte, NC, USA
Volume
46
Issue
2
fYear
1998
fDate
2/1/1998 12:00:00 AM
Firstpage
133
Lastpage
141
Abstract
Results of experiments on the two-dimensional (2-D) quasi real-time microwave tomographic system have been reported. Various reconstruction possibilities of this system have been demonstrated on phantoms and canine hearts. The early utilized Rytov approximation is appropriate for low-contrast inverse problems. A new iterative reconstruction algorithm is proposed in this paper. The iterations converge to an accurate solution of the scalar Helmholtz-equation inverse problem in the case of higher contrasts. The goal of the reported study is an experimental and theoretical investigation of the proposed iteration algorithm. The influence on the quality of the reconstructed images and on the spatial resolution of such factors as the number of receivers, the accuracy of the scattered field measurements, and the dielectric contrast have been investigated
Keywords
image reconstruction; inverse problems; iterative methods; microwave imaging; tomography; Rytov approximation; canine heart; dielectric contrast; image reconstruction; inverse problem; iteration algorithm; phantom; scalar Helmholtz equation; scattered field measurement; spatial resolution; two-dimensional quasi real-time microwave tomography; Heart; Image converters; Image reconstruction; Imaging phantoms; Inverse problems; Iterative algorithms; Real time systems; Reconstruction algorithms; Tomography; Two dimensional displays;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.660979
Filename
660979
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