Physical and biological mechanisms of direct plasma interaction with living tissue
Физические и биологические механизмы прямого взаимодействия плазмы с живой тканью
2009-11-26
SCID: 54.1/ydvg6pce
Discuss with AI
biological mechanismscharged speciesfloating electrode dielectric barrier dischargeplasma selectivityplasma-tissue interaction
Figures from the paper
Abstract (AI)
Mechanisms of plasma interaction with living tissues and cells can be quite complex, owing to the complexity of both the plasma and the tissue. Thus, unification of all the mechanisms under one umbrella might not be possible. However, the authors are attempting to make first steps in this direction. In this paper, analysis of interaction of floating electrode dielectric barrier discharge (FE-DBD) with living tissues and cells is presented and biological and physical mechanisms are discussed. In physical mechanisms, charged species are identified as the major contributors to the desired effect and a mechanism of this interaction is proposed. Biological mechanisms are also addressed and a hypothesis of plasma selectivity and its effects is offered.
Key Findings
1
A hypothesis is presented that plasma interactions may exhibit biological selectivity, producing differential effects in living systems.
2
Charged plasma species are identified as major contributors to the desired biological effects, and a physical interaction mechanism is proposed.
3
The authors argue that plasma–tissue interactions are highly complex and may not be fully unified under a single mechanism.
4
The paper analyzes physical and biological mechanisms underlying floating-electrode dielectric barrier discharge interactions with living tissues and cells.
Research Object
floating electrode dielectric barrier discharge (FE-DBD) interacting with living tissues and cells
Research Subject
the physical and biological interaction mechanisms, including charged-species effects and plasma selectivity
Publication Details
Publication Date
2009-11-26
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest