00944nas a2200325 4500008004100000022001400041245009900055210006900154300000800223490000700231653000700238653000700245100002200252700002000274700002000294700001900314700001400333700001900347700002700366700002300393700001900416700001600435700002300451700002400474700002200498700001900520700001500539700002000554856004400574 2021 eng d a2079-637400aRaman Microspectroscopic Analysis of Selenium Bioaccumulation by Green Alga Chlorella vulgaris0 aRaman Microspectroscopic Analysis of Selenium Bioaccumulation by a1150 v1110aBF10aMF1 aKizovský, Martin1 aPilát, Zdeněk1 aMylenko, Mykola1 aHrouzek, Pavel1 aKuta, Jan1 aSkoupý, Radim1 aKrzyžánek, Vladislav1 aHrubanová, Kamila1 aAdamczyk, Olga1 aJežek, Jan1 aBernatová, Silvie1 aKlementová, Tereza1 aGjevik, Alžběta1 aŠiler, Martin1 aSamek, Ota1 aZemánek, Pavel uhttps://www.mdpi.com/2079-6374/11/4/11501576nas a2200241 4500008004100000245012300041210006900164300001200233490000700245520085700252653000701109653000701116653000701123100002701130700001901157700001501176700002201191700002301213700001601236700002001252700002001272856004201292 2019 eng d00aIdentification of ability to form biofilm in Candida parapsilosis and Staphylococcus epidermidis by Raman spectroscopy0 aIdentification of ability to form biofilm in Candida parapsilosi a509-5170 v143 a

Aim: Finding rapid, reliable diagnostic methods is a big challenge in clinical microbiology. Raman spectroscopy is an optical method used for multiple applications in scientific fields including microbiology. This work reports its potential in identifying biofilm positive strains of Candida parapsilosis and Staphylococcus epidermidis. Materials & methods: We tested 54 S. epidermidis strains (23 biofilm positive, 31 negative) and 51 C. parapsilosis strains (27 biofilm positive, 24 negative) from colonies on Mueller-Hinton agar plates, using Raman spectroscopy. Results: The accuracy was 98.9% for C. parapsilosis and 96.1% for S. epidermidis. Conclusion: The method showed great potential for identifying biofilm positive bacterial and yeast strains. We suggest that Raman spectroscopy might become a useful aid in clinical diagnostics.

10aBF10aKF10aMF1 aRebrošová, Katarína1 aŠiler, Martin1 aSamek, Ota1 aRůžička, Filip1 aBernatová, Silvie1 aJežek, Jan1 aZemánek, Pavel1 aHolá, Veronika uhttps://doi.org/10.2217/fmb-2018-029700780nas a2200229 4500008004100000245010000041210006900141300001400210490000800224653000700232653000700239100002300246700002600269700001600295700001500311700001500326700002400341700002500365700002000390700002600410856011400436 2019 eng d00aWavelength-Dependent Optical Force Aggregation of Gold Nanorods for SERS in a Microfluidic Chip0 aWavelengthDependent Optical Force Aggregation of Gold Nanorods f a5608-56150 v12310aBF10aMF1 aBernatová, Silvie1 aDonato, Maria, Grazia1 aJežek, Jan1 aPilát, Z.1 aSamek, Ota1 aMagazzu, Alessandro1 aMaragò, Onofrio, M.1 aZemánek, Pavel1 aGucciardi, Pietro, G. uhttps://www.isibrno.cz/cs/wavelength-dependent-optical-force-aggregation-gold-nanorods-sers-microfluidic-chip
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