DocumentCode :
72739
Title :
Programmable Pulsed Magnetic Field System for Biological Applications
Author :
Novickij, Vitalij ; Grainys, Audrius ; Novickij, Jurij ; Lucinskis, Audrius
Author_Institution :
High Magn. Field Lab., Vilnius Gediminas Tech. Univ., Vilnius, Lithuania
Volume :
50
Issue :
11
fYear :
2014
fDate :
Nov. 2014
Firstpage :
1
Lastpage :
4
Abstract :
In this paper, a pulsed magnetic field system developed for biological applications is presented. The proposed pulsed power setup generates repetitive controlled frequency and width square wave 0-4 kV electrical pulses and supports currents up to 1000 A. As a load, a solenoid-type inductor is used with integrated plastic cuvette for biological cells. Homogeneous repetitive microsecond range pulsed magnetic field up to 15 T inside the effective volume of the cuvette can be generated. The development process, the structure of the pulsed magnetic field setup, and the solutions implemented to achieve biomedical applicability are overviewed in this paper. The presented experimental results showing contactless permeabilization of biological cells in pulsed magnetic field have an excellent potential for the development of a new biomedical treatment technique and applicability of the setup.
Keywords :
biological effects of fields; biomagnetism; biomedical electronics; biomedical equipment; cellular biophysics; patient treatment; solenoids; biological applications; biological cells; biomedical applicability; biomedical treatment technique; contactless permeabilization; electrical pulses; homogeneous repetitive microsecond range pulsed magnetic field; integrated plastic cuvette; programmable pulsed magnetic field system; pulsed magnetic field setup; pulsed power setup; repetitive controlled frequency; solenoid-type inductor; voltage 0 kV to 4 kV; width square wave; Capacitors; Coils; Fungi; Magnetic circuits; Magnetic fields; Magnetic multilayers; Biological cells; biomedical electronics; electromagnetic systems; pulse power systems;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2014.2323336
Filename :
6971734
Link To Document :
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