Zobrazeno 1 - 3
of 3
pro vyhledávání: '"Meta Ješelnik"'
Autor:
Mojca Zupanc, Jure Zevnik, Arijana Filipić, Ion Gutierrez-Aguirre, Meta Ješelnik, Tamara Košir, Jernej Ortar, Matevž Dular, Martin Petkovšek
Publikováno v:
Ultrasonics Sonochemistry, Vol 95, Iss , Pp 106400- (2023)
The COVID −19 pandemic reminded us that we need better contingency plans to prevent the spread of infectious agents and the occurrence of epidemics or pandemics. Although the transmissibility of SARS-CoV-2 in water has not been confirmed, there are
Externí odkaz:
https://doaj.org/article/e12e25fae3a14e3991c806104d5d15ff
Autor:
Arijana Filipić, Tadeja Lukežič, Katarina Bačnik, Maja Ravnikar, Meta Ješelnik, Tamara Košir, Martin Petkovšek, Mojca Zupanc, Matevž Dular, Ion Gutierrez Aguirre
Publikováno v:
Ultrasonics Sonochemistry, Vol 82, Iss , Pp 105898- (2022)
Waterborne plant viruses can destroy entire crops, leading not only to high financial losses but also to food shortages. Potato virus Y (PVY) is the most important potato viral pathogen that can also affect other valuable crops. Recently, it has been
Externí odkaz:
https://doaj.org/article/83d4acfa54fe441d8d3d2069a5542ab6
Autor:
Katarina Bačnik, Tamara Košir, Arijana Filipić, Martin Petkovšek, Matevž Dular, Tadeja Lukežič, Maja Ravnikar, Mojca Zupanc, Meta Ješelnik, Ion Gutierrez Aguirre
Publikováno v:
Ultrasonics Sonochemistry, Vol 82, Iss, Pp 105898-(2022)
Ultrasonics Sonochemistry
Ultrasonics Sonochemistry
Graphical abstract
Highlights • Hydrodynamic cavitation inactivates PVY in water samples after 500 passes or less. • Hydrodynamic cavitation disrupts the viral capsid. • Hydrodynamic cavitation induces minor damage in the viral genome. •
Highlights • Hydrodynamic cavitation inactivates PVY in water samples after 500 passes or less. • Hydrodynamic cavitation disrupts the viral capsid. • Hydrodynamic cavitation induces minor damage in the viral genome. •