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Elektronski emulator biološkega tkiva kot električnega bremena med elektroporacijo z bipolarnimi pulzi
ID MATKO, MATJAŽ (Author), ID Reberšek, Matej (Mentor) More about this mentor... This link opens in a new window, ID PIRC, EVA (Comentor)

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Abstract
Na trgu se v zadnjem obdobju pojavlja veliko različnih proizvajalcev, ki proizvajajo elektroporatorje tako za medicinske namene, kot tudi za uporabo v predelavi hrane. Trenutno ni predpisanega nobenega standarda, ki bi opredeljeval ustrezno delovanje elektroporatorja. Da bi lahko elektroporatorje ustrezno testirali, je potrebno načrtati elektronsko breme, ki kar se da dobro simulira biološko tkivo. Pri elektroporaciji se uporabljajo tako monopolarni, kot tudi bipolarni napetostni pulzi. Posamezen tokovni pulzni odziv je sestavljen iz linearne komponente, kapacitivne komponente in poracijskega dela. Takšen eksponentni odziv opišemo z enačbo, ki jo prav tako razdelimo na tri dele. Enako je iz treh delov sestavljeno tudi vezje emulatorja. Vsaka posamezna veja opisuje enega od sestavnih delov pulza. Pri bipolarnih pulzih je potrebno upoštevati še negativne pulze. V tem delu smo za testiranje negativnih pulzov v vezju uporabili diodni mostič. Prejšnje raziskave so pokazale, da se pri monopolarnih pulzih ohranja elektroporacijski spomin prejšnjega pulza. Glavno vprašanje tega dela je kako je z ohranjanjem elektroporacijskega spomina pri bipolarnih pulzih.

Language:Slovenian
Keywords:Elektroporacija, bipolarni pulzi, biološko breme
Work type:Master's thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2021
PID:20.500.12556/RUL-125676 This link opens in a new window
Publication date in RUL:01.04.2021
Views:1001
Downloads:112
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Secondary language

Language:English
Title:Electronic emulator of biological tissue as an electrical load during electroporation with bipolar pulses
Abstract:
Currently there is many different manufacturers of the electroporators on the market. They are producing electroporators for medical use and for food industry. At this moment there is no prescribed standard on the basis of which we can test them properly. For testing them we must design electrical load, which will be able to simulate biological tissue as much as possible. For electroporation we use monopolar pulses as well as bipolar voltage pulses. Individual current pulse response consists of a linear component, a capacitive component and a poration part. This kind of exponential response we can describe with an equation which is divided on three parts. Circuit diagram of the emulator is based on three separated branch as well. Each individual branch describes one part of the equation. In the case of bipolar pulses, negative pulses must also be taken into account. In this part, a diode bridge was used to test the negative pulses in the circuit. Previous researches had shown that electroporation memory of the previous pulse is preserved when we use monopolar pulses. The main question of this research is how electroporation memory is preserved in bipolar pulses.

Keywords:Electroporation, bipolar pulse, biological load

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