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Gintautas Saulis
Gintautas Saulis
Verified email at gmf.vdu.lt
Title
Cited by
Cited by
Year
Electroporation of cell membranes: the fundamental effects of pulsed electric fields in food processing
G Saulis
Food Engineering Reviews 2, 52-73, 2010
2532010
Energy-efficient biomass processing with pulsed electric fields for bioeconomy and sustainable development
A Golberg, M Sack, J Teissie, G Pataro, U Pliquett, G Saulis, T Stefan, ...
Biotechnology for biofuels 9, 1-22, 2016
2412016
Oxidative effects of nanosecond pulsed electric field exposure in cells and cell-free media
ON Pakhomova, VA Khorokhorina, AM Bowman, R Rodaitė-Riševičienė, ...
Archives of biochemistry and biophysics 527 (1), 55-64, 2012
1932012
Kinetics of pore resealing in cell membranes after electroporation
G Saulis, MS Venslauskas, J Naktinis
Journal of Electroanalytical Chemistry and Interfacial Electrochemistry 321 …, 1991
1701991
Size of the pores created by an electric pulse: microsecond vs millisecond pulses
G Saulis, R Saulė
Biochimica et Biophysica Acta (BBA)-Biomembranes 1818 (12), 3032-3039, 2012
1402012
Pore disappearance in a cell after electroporation: theoretical simulation and comparison with experiments
G Saulis
Biophysical journal 73 (3), 1299-1309, 1997
1071997
Changes of the solution pH due to exposure by high-voltage electric pulses
G Saulis, R Lapė, R Pranevičiūtė, D Mickevičius
Bioelectrochemistry 67 (1), 101-108, 2005
1042005
Selective susceptibility to nanosecond pulsed electric field (nsPEF) across different human cell types
EC Gianulis, C Labib, G Saulis, V Novickij, ON Pakhomova, ...
Cellular and Molecular Life Sciences 74, 1741-1754, 2017
732017
Determination of cell electroporation from the release of intracellular potassium ions
G Saulis, S Šatkauskas, R Pranevičiūtė
Analytical biochemistry 360 (2), 273-281, 2007
642007
Cell electroporation: Part 1. Theoretical simulation of the process of pore formation in a cell
G Saulis, MS Venslauskas
Bioelectrochemistry and bioenergetics 32 (3), 221-235, 1993
611993
Cell electroporation: Part 1. Theoretical simulation of the process of pore formation in a cell
G Saulis, MS Venslauskas
Bioelectrochemistry and bioenergetics 32 (3), 221-235, 1993
611993
Release of iron ions from the stainless steel anode occurring during high-voltage pulses and its consequences for cell electroporation technology
R Rodaitė-Riševičienė, R Saulė, V Snitka, G Saulis
IEEE Transactions on Plasma Science 42 (1), 249-254, 2013
582013
Cell electroporation: estimation of the number of pores and their sizes.
G Saulis
Biomedical Sciences Instrumentation 35, 291-296, 1999
421999
The loading of human erythrocytes with small molecules by electroporation
G Saulis
Cell Mol Biol Lett 10 (1), 23-35, 2005
412005
Increase of the roughness of the stainless-steel anode surface due to the exposure to high-voltage electric pulses as revealed by atomic force microscopy
G Saulis, R Rodaitė-Riševičienė, V Snitka
Bioelectrochemistry 70 (2), 519-523, 2007
382007
Cell electroporation: Part 2. Experimental measurements of the kinetics of pore formationin human erythrocytes
G Saulis, MS Venslauskas
Bioelectrochemistry and bioenergetics 32 (3), 237-248, 1993
381993
Electric field‐induced effects on yeast cell wall permeabilization
A Stirke, A Zimkus, A Ramanaviciene, S Balevicius, N Zurauskiene, ...
Bioelectromagnetics 35 (2), 136-144, 2014
292014
Kinetics of pore disappearance in a cell after electroporation
G Saulis
Biomedical sciences instrumentation 35, 409-414, 1999
281999
Theoretical analysis and experimental determination of the relationships between the parameters of the electric field pulse required to electroporate the cells
G Saulis, R Saulė, A Bitinaitė, N Žurauskienė, V Stankevič, S Balevičius
IEEE Transactions on Plasma Science 41 (10), 2913-2919, 2013
252013
Comparison of electroporation threshold for different cell lines in vitro
G Saulis, R Saulė
Acta Physica Polonica A 115 (6), 1056-1058, 2009
252009
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