DocumentCode
8828
Title
The Design and Development of an Integrated Multi-Functional Microwave Antenna Structure for Biological Applications
Author
Hancock, C.P. ; Dharmasiri, N. ; White, M. ; Goodman, A.M.
Author_Institution
Med. Microwave Syst. Res. Group, Bangor Univ., Bangor, UK
Volume
61
Issue
5
fYear
2013
fDate
May-13
Firstpage
2230
Lastpage
2241
Abstract
A new multi-functional microwave antenna structure for use in biological applications in described. The antenna structure allows efficient propagation of Ku -band energy into biological tissue to perform in situ tissue characterization (measurement) and ablation or coagulation (treatment) of solid cancerous tumors and surrounding tissue. A calibration method that allows tissue characterization has been developed. The structure also supports a separate channel to allow material to be transported inside the structure without affecting the electromagnetic field propagation within the structure and the radiation pattern produced at the distal end. The structure is rigid and of small enough diameter to enable it to be introduced percutaneously into the human body under local anaesthesia.
Keywords
antenna radiation patterns; biomedical measurement; calibration; cancer; coagulation; microwave antennas; microwave measurement; microwave propagation; tumours; Ku-band energy; biological applications; biological tissue; electromagnetic field propagation; human body; in situ tissue characterization; integrated multifunctional microwave antenna structure; local anaesthesia; radiation pattern; solid cancerous tumors; tissue ablation; tissue coagulation; Brachytherapy; coagulation; conductivity; dielectric properties; false negatives; measurement of biological tissue properties; microwave ablation; multi-functional microwave antenna; needle biopsies; percutaneous insertion; relative permittivity;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2013.2255620
Filename
6494352
Link To Document