Citácie: 1.) | Julak J.; Vankova E.; Valkova M; Kasparova P.; Masak J.; Scholtz V.: Combination of non-thermal plasma and subsequent antibiotic treatment for biofilm re-development prevention; FOLIA MICROBIOLOGICA (2020), WoS (2020) ------------- | 2.) | M. Huang, H. Zhuang, J. Zhao, J. Wang, W. Yan, and J. Zhang: Differences in cellular damages induced by dielectric barrier discharge plasma between Salmonella Typhimurium and Staphylococcus aureus. Bioelectrochemistry 107445 (2019), citation no. X, WoS (2020) ------------- | 3.) | Z. Xu, X. Zhou, W. Yang, Y. Zhang, Z. Ye, S. Hu, C. Ye, Y. Li, Y. Lan, J. Shen, X. Ye, F. Yang, C. Cheng: In vitro antimicrobial effects and mechanism of air plasma‐activated water on Staphylococcus aureus biofilms, Plasma Process. Polym. X, e1900270 (2020), citation no. 16, WoS (2020) ------------- | 4.) | R. Múgica-Vidal, E. Sainz-García, A. Álvarez-Ordóñez, M. Prieto, M. González-Raurich, M. López, B. Rojo-Bezares, Y. Sáenz, and F. Alba-Elías: Production of Antibacterial Coatings Through Atmospheric Pressure Plasma: a Promising Alternative for Combatting Biofilms in the Food Industry. Food and Bioprocess Technology 12(8) 1251-1263 (2019), citation no. X, Scopus/INDEX. (2019) ------------- | 5.) | P. Ranieri, G. McGovern, H. Tse, A. Fulmer, M. Kovalenko, G. Nirenberg, V. Miller, A. Fridman, A. Rabinovich, G. Fridman: Microsecond-Pulsed Dielectric Barrier Discharge Plasma-Treated Mist for Inactivation of Escherichia coli In Vitro, IEEE Trans. Plasma Sci. 47 (1), 395-402 (2019), WoS (2019) ------------- | 6.) | Kruszelnicki J; Lietz AM; Kushner MJ: Atmospheric pressure plasma activation of water droplets, J. PHYS. D-APPL. PHYS. 52 (35) 355207 (2019), WoS (2019) ------------- | 7.) | H. Wolfmeier, D. Pletzer, S. C. Mansour, R. E. Hancock: New Perspectives in Biofilm Eradication, ACS Infectious Diseases 4 (2) 93-106 (2018), citation no. 49, WoS/SCOPUS (2018) ------------- | 8.) | Z. Xu, C. Cheng, J. Shen, Y. Lan, S. Hu, W. Han, & P. K. Chu: In vitro antimicrobial effects and mechanisms of direct current air-liquid discharge plasma on planktonic Staphylococcus aureus and Escherichia coli in liquids. Bioelectrochemistry, 121, 125-134 (2018), citation no. X, INDEX (2018) ------------- | 9.) | A. Kuzminova, T. Kretková, O. Kylián, J. Hanuš, I. Khalakhan, V. Prukner, E. Doležalová, M. Šimek and H. Biederman: Etching of polymers, proteins and bacterial spores by atmospheric pressure DBD plasma in air. Journal of Physics D: Applied Physics 50(13), 135201 (2017), citation no. X, WoS+SCOPUS (2017) ------------- | 10.) | B. A. Niemira: Targeting Biofilms with Cold Plasma: New Approaches to a Persistent Problem. Biofilms (2017) (2017) ------------- | 11.) | C. Smet, M. Baka, A. Dickenson, J.L. Walsh, V.P. Valdramidis, and J.F. Van Impe: Antimicrobial efficacy of cold atmospheric plasma for different intrinsic and extrinsic parameters. Plasma Processes and Polymers 15(2) 93-106 (2017), citation no. X, Scopus/INDEX. (2017) ------------- | 12.) | B. Sun, Y. Xin, X. Zhu, Z. Gao, Z. Yan, and T. Ohshima: Effects of shock waves, ultraviolet light, and electric fields from pulsed discharges in water on inactivation of Escherichia coli. Bioelectrochemistry 120, 112-119 (2017), citation no. X, Scopus/INDEX. (2017) ------------- | 13.) | J. Zabielska, A. Tyfa, and A. Kunicka-Styczyńska: Methods for eradication of the biofilms formed by opportunistic pathogens using novel techniques–A review. Folia Biologica et Oecologica 12.1, 26-37 (2016) (2016) ------------- | |