Zobrazeno 1 - 10
of 20
pro vyhledávání: '"Aiko Huckauf"'
Autor:
Susanne Ohlsen, Martin Ganter, Peter Wohlsein, Bernd Reckels, Aiko Huckauf, Nikola Lenzewski, Sabine Aboling
Publikováno v:
Animals, Vol 12, Iss 10, p 1289 (2022)
Common ragwort (Senecio jacobaea L.) naturally occurs on species-rich grasslands. Containing pyrrolizidine alkaloids (PA), it endangers livestock health through contaminated feed. Although in vitro studies showed a detoxification capacity of PA in sh
Externí odkaz:
https://doaj.org/article/b50d9fb4ab3245f1a27fe755323da496
Autor:
Susanne Ohlsen, Martin Ganter, Peter Wohlsein, Bernd Reckels, Aiko Huckauf, Nikola Lenzewski, Sabine Aboling
Publikováno v:
Animals, Vol 12, Iss 8, p 1000 (2022)
Species-rich pastures naturally contain potentially toxic plants such as common ragwort (Senecio jacobaea L.), whose pyrrolizidine alkaloids (PA) impose a risk, mainly for cattle and horses. Although in vitro studies showed detoxification capacity of
Externí odkaz:
https://doaj.org/article/d108772a271b4922ac4b7a508bc67727
Autor:
Aboling, Susanne Ohlsen, Martin Ganter, Peter Wohlsein, Bernd Reckels, Aiko Huckauf, Nikola Lenzewski, Sabine
Publikováno v:
Animals; Volume 12; Issue 10; Pages: 1289
Common ragwort (Senecio jacobaea L.) naturally occurs on species-rich grasslands. Containing pyrrolizidine alkaloids (PA), it endangers livestock health through contaminated feed. Although in vitro studies showed a detoxification capacity of PA in sh
Autor:
Aboling, Susanne Ohlsen, Martin Ganter, Peter Wohlsein, Bernd Reckels, Aiko Huckauf, Nikola Lenzewski, Sabine
Publikováno v:
Animals; Volume 12; Issue 8; Pages: 1000
Species-rich pastures naturally contain potentially toxic plants such as common ragwort (Senecio jacobaea L.), whose pyrrolizidine alkaloids (PA) impose a risk, mainly for cattle and horses. Although in vitro studies showed detoxification capacity of
Autor:
Florian Kaltner, Matthias Zimmermann, Aiko Huckauf, Arne Dübecke, Till Beuerle, Christoph Gottschalk, Ines Rahaus
Publikováno v:
Food additivescontaminants. Part A, Chemistry, analysis, control, exposurerisk assessment. 35(7)
The contamination of honey with hepatotoxic pyrrolizidine alkaloids (PAs) is a well-known hazard for food safety. While management strategies and controls of the honey industry aim to reduce the PA levels, uncertainties remain with regard to the safe
Autor:
Aiko Huckauf, Helge Neumann
Publikováno v:
Journal für Verbraucherschutz und Lebensmittelsicherheit. 11:105-115
Pyrrolizidin-Alkaloide (PAs) sind Pflanzeninhaltsstoffe, die uber Honigbienen (Apis mellifera) in Honige eingetragen werden und so in die menschliche Nahrung gelangen konnen. PAs gelten fur den Menschen in Abhangigkeit von der Aufnahmemenge als gesun
Publikováno v:
The Journal of Chemical Physics. 119:7749-7755
Large-scale coupled cluster calculations have yielded an almost T-shaped equilibrium structure for the Ar–HCCCN van der Waals complex, with an equilibrium dissociation energy of De=221 cm−1. The theoretical predictions are confirmed by pulsed-noz
Publikováno v:
Journal of Molecular Spectroscopy. 216:374-378
The hot bands in the ν1, ν2, and ν3 band systems of NC–CC–NC (3-isocyano-2-propynenitrile) have been investigated and transitions from nv9-levels with n up to 4 have been identified. Two weak bands have also been observed in the gas phase infr
Autor:
Jean Demaison, H. Harder, Aiko Huckauf, Laurent Margulès, Heinrich Mäder, M. Gnida, Petr Pracna, Kamil Sarka, J. Cosléou
Publikováno v:
Journal of Molecular Spectroscopy. 216:481-492
The υ6=2 vibrational state of the main isotopomer of trifluorosilane, 28SiHF3, has been investigated in the centimeter- and millimeter-wave ranges. Rotational spectra following the Δ J=1, Δk=Δ l=0 selection rule have been measured up to J=24 and
Autor:
Aiko Huckauf, A. Guarnieri
Publikováno v:
Journal of Molecular Spectroscopy. 213:79-85
The pure rotational spectrum of fluoroethyne (fluoroacetylene, HCCF) has been reinvestigated. Rotational transitions have been measured in the frequency range from 230 up to 510 GHz and assigned to the excited vibrational states (υ 3 υ 4 υ 5 )=(00