DocumentCode
1556350
Title
New Nonthermal Atmospheric-Pressure Plasma Sources for Decontamination of Human Extremities
Author
Weltmann, Klaus-Dieter ; Fricke, Katja ; Stieber, Manfred ; Brandenburg, Ronny ; Von Woedtke, Thomas ; Schnabel, Uta
Author_Institution
Leibniz Inst. for Plasma Sci. & Technol. Greifswald e.V. (INP Greifswald), Greifswald, Germany
Volume
40
Issue
11
fYear
2012
Firstpage
2963
Lastpage
2969
Abstract
The research and development of plasma sources, which can be used for therapeutic applications in the new and emerging field of plasma medicine, has gained more and more interest during recent years. These applications require cold nonthermal plasmas operating at atmospheric pressure. Due to the fact that, in general, plasma on or in the human body is a challenge both for medicine and plasma physics, basic research combining experimental physical and biological investigation and modeling is necessary to provide the required knowledge for therapeutic applications. It turned out that each application needs a special tailor-made plasma source, passing a minimum set of physical and biological tests before it can be considered for medical use. In addition to atmospheric-pressure plasma jets, dielectric barrier discharges offer great potential for a variety of medical indications. A new 2-D and even 3-D acting plasma source is introduced, exemplified for a possible decontamination of human extremities or similar tasks. In contradiction to most of today´s existing plasma sources with fixed electrodes and nozzles, the prototype uses flexible electrodes to automatically adapt the plasma under equal and stable conditions to nearly all surface structures. First, physical and biological investigations demonstrate the general potential for therapeutic applications on preferably intact skin surfaces.
Keywords
bioelectric phenomena; biomedical electrodes; decontamination; patient treatment; plasma applications; plasma jets; plasma sources; skin; atmospheric-pressure plasma jets; cold nonthermal plasmas; decontamination; dielectric barrier discharges; flexible electrodes; human extremities; intact skin surfaces; nonthermal atmospheric-pressure plasma sources; plasma medicine; therapeutic applications; Arrays; Electrodes; Microorganisms; Plasma sources; Plasma temperature; Temperature measurement; Atmospheric-pressure plasmas; plasma applications; plasma medicine; sterilization;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2012.2204279
Filename
6237537
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