DocumentCode :
760895
Title :
A Versatile High-Permittivity Phantom for EIT
Author :
Kao, Tzu-Jen ; Saulnier, Gary J. ; Isaacson, David ; Szabo, Tomas L. ; Newell, Jonathan C.
Author_Institution :
Dept. of Biomed. Eng., Rensselaer Polytech. Inst., Troy, NY
Volume :
55
Issue :
11
fYear :
2008
Firstpage :
2601
Lastpage :
2607
Abstract :
Phantoms are frequently used in medical imaging systems to test hardware, reconstruction algorithms, and the interpretation of data. This report describes and characterizes the use of powdered graphite as a means of adding a significant reactive component or permittivity to useful phantom media for electrical impedance imaging. The phantom materials produced have usable complex admittivity at the electrical impedance tomography (EIT) frequencies from a few kilohertz to 1 MHz, as measured by our EIT system (ACT4) and by a commercial bioimpedance analyzer (BIS 4000, Xitron). We have also studied a commercial ultrasound coupling gel, which is highly electrically conductive and semisolid but that permits objects to move within it. The mixture of agar-graphite and gel-graphite, increases in permittivity and conductivity are proportional to the graphite concentration. We also report the use of a porous polymer membrane to simulate skin. A thin layer of this membrane increased resistance and the characteristic frequency of the phantoms, providing a promising candidate to simulate the effect of skin and the layered structure of a breast or other anatomical structure. The graphite also provides a realistic level of ldquospecklerdquo in ultrasound images of the phantom, which may be useful in developing dual-mode imaging systems with ultrasound and the EIT.
Keywords :
biomedical imaging; biomedical materials; electric impedance imaging; electrical conductivity; gels; graphite; permittivity; phantoms; polymers; ACT4 EIT system; BIS 4000 bioimpedance analyzer; C; agar-graphite mixture; characteristic phantom frequency; complex admittivity; conductivity; electrical impedance imaging; electrical impedance tomography; gel-graphite mixture; graphite concentration; high permittivity phantom; medical imaging systems; porous polymer membrane; powdered graphite; reactive component; skin simulator; ultrasound coupling gel; Biomedical imaging; Biomembranes; Frequency; Imaging phantoms; Impedance; Medical tests; Permittivity; Skin; Tomography; Ultrasonic imaging; Electrical impedance tomography (EIT); graphite powder; high-permittivity phantom; porous polymer; Agar; Electric Impedance; Gels; Graphite; Humans; Phantoms, Imaging; Polymers; Porosity; Sulfones; Tomography;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2008.2001287
Filename :
4547475
Link To Document :
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