DocumentCode
8052
Title
Plasma Bullets Propagation Inside of Agarose Tissue Model
Author
Park, Dayonna ; Fridman, Gregory ; Fridman, Alexander ; Dobrynin, Danil
Author_Institution
A.J. Drexel Plasma Inst., Drexel Univ., Camden, NJ, USA
Volume
41
Issue
7
fYear
2013
fDate
Jul-13
Firstpage
1725
Lastpage
1730
Abstract
This paper demonstrates plasma bullets generated by microsecond pulses in He flow propagation inside of conductive agarose gel tubes mimicking tissue. The objective of this paper is to understand the possibility of internal diseases´ treatment (e.g., lung or intestinal cancer) using plasma jets. The propagation dynamics is studied using fast imaging technique, and production of reactive species is demonstrated both in gas phase (using optical emission spectroscopy) and inside of the agarose gel (using fluorescent dye). In addition, it is demonstrated that plasma bullets may propagate not only in a straight tubes, but also in L-shaped tubes, as well as be split in T-shaped tubes. All these facts offer an indication of possible successful application of plasma bullets for treatment of internal diseases, for example, lung cancers or intestinal diseases.
Keywords
biological tissues; cancer; gels; helium; lung; plasma applications; plasma diagnostics; plasma jets; radiation therapy; He; He flow propagation; L-shaped tubes; T-shaped tubes; agarose tissue model; conductive agarose gel tubes; fast imaging technique; fluorescent dye; gas phase; internal disease treatment; intestinal cancer; lung cancer; microsecond pulses; optical emission spectroscopy; plasma bullets propagation; plasma jets; propagation dynamics; reactive species; Discharges (electric); Diseases; Electron tubes; Imaging; Lungs; Plasmas; Production; Fast imaging; plasma bullets; plasma jet; plasma medicine; reactive oxygen species; tissue model;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2013.2265373
Filename
6545394
Link To Document