Zobrazeno 1 - 10
of 20
pro vyhledávání: '"Michael A. Stravs"'
Autor:
Johannes Rainer, Andrea Vicini, Liesa Salzer, Jan Stanstrup, Josep M. Badia, Steffen Neumann, Michael A. Stravs, Vinicius Verri Hernandes, Laurent Gatto, Sebastian Gibb, Michael Witting
Publikováno v:
Metabolites, Vol 12, Iss 2, p 173 (2022)
Liquid chromatography-mass spectrometry (LC-MS)-based untargeted metabolomics experiments have become increasingly popular because of the wide range of metabolites that can be analyzed and the possibility to measure novel compounds. LC-MS instrumenta
Externí odkaz:
https://doaj.org/article/d0c722a9c2344974bfc364f93366b316
Autor:
Jan Stanstrup, Corey D. Broeckling, Rick Helmus, Nils Hoffmann, Ewy Mathé, Thomas Naake, Luca Nicolotti, Kristian Peters, Johannes Rainer, Reza M. Salek, Tobias Schulze, Emma L. Schymanski, Michael A. Stravs, Etienne A. Thévenot, Hendrik Treutler, Ralf J. M. Weber, Egon Willighagen, Michael Witting, Steffen Neumann
Publikováno v:
Metabolites, Vol 9, Iss 10, p 200 (2019)
Metabolomics aims to measure and characterise the complex composition of metabolites in a biological system. Metabolomics studies involve sophisticated analytical techniques such as mass spectrometry and nuclear magnetic resonance spectroscopy, and g
Externí odkaz:
https://doaj.org/article/958150bda6804ed9be5ae5460ced77ac
Autor:
Herbert Oberacher, Vera Reinstadler, Marco Kreidl, Michael A. Stravs, Juliane Hollender, Emma L. Schymanski
Publikováno v:
Metabolites, Vol 9, Iss 1, p 3 (2018)
Tandem mass spectral databases are indispensable for fast and reliable compound identification in nontargeted analysis with liquid chromatography–high resolution tandem mass spectrometry (LC-HRMS/MS), which is applied to a wide range of scientific
Externí odkaz:
https://doaj.org/article/6b66d671c4004db692ab84174f177932
Publikováno v:
Nature Methods, 19 (7)
Current methods for structure elucidation of small molecules rely on finding similarity with spectra of known compounds, but do not predict structures de novo for unknown compound classes. We present MSNovelist, which combines fingerprint prediction
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::433abdc3a5837325bf91aa4845284ea4
https://hdl.handle.net/20.500.11850/555907
https://hdl.handle.net/20.500.11850/555907
Publikováno v:
Environmental Science & Technology Letters. 8:373-380
Tracking the occurrence of a broad variety of chemicals in the aquatic environment at a high temporal resolution over extended time periods is challenging. Here, we present a transportable platform...
Tracking the occurrence of a plethora of chemicals in the aquatic environment at high temporal resolution over extended periods is a huge challenge. Here, we present a transportable high-resolution mass spectrometry platform including a fully automat
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::bc735963cde9a555df6956a85d5a7e3c
https://doi.org/10.26434/chemrxiv.13333286
https://doi.org/10.26434/chemrxiv.13333286
Publikováno v:
Environmental Science & Technology, 54 (22)
Extracellular enzymes are master recyclers of organic matter, and to predict their functional lifetime, we need to understand their environmental transformation processes. In surface waters, direct and indirect photochemical transformation is a known
Publikováno v:
Environmental Science: Processes & Impacts. 19:822-832
Phytoplankton constitute an important component of surface water ecosystems; however little is known about their contribution to biotransformation of organic micropollutants. To elucidate biotransformation processes, batch experiments with two cyanob
Publikováno v:
Environmental sciencetechnology. 53(8)
Biotransformation of chemical pollutants is an ecological process requiring multifunctionality (multiple metabolic pathways) and, potentially, high biodiversity. Phytoplankton communities are highly diverse functionally and taxonomically and co-occur
Autor:
Michael A. Stravs, Jan Stanstrup, Etienne A. Thévenot, Kristian Peters, Tobias Schulze, Ewy Mathé, Michael Witting, Emma L. Schymanski, Thomas Naake, Johannes Rainer, Rick Helmus, Reza M. Salek, Ralf J. M. Weber, L Nicolotti, Hendrik Treutler, Egon Willighagen, Steffen Neumann, Nils Hoffmann, Corey D. Broeckling
Publikováno v:
Metabolites 9:200 (2019)
Metabolites
Stanstrup, J, Broeckling, C D, Helmus, R, Hoffmann, N, Mathé, E, Naake, T, Nicolotti, L, Peters, K, Rainer, J, Salek, R M, Schulze, T, Schymanski, E L, Stravs, M A, Thévenot, E A, Treutler, H, Weber, R J M, Willighagen, E, Witting, M & Neumann, S 2019, ' The metaRbolomics Toolbox in Bioconductor and beyond ', Metabolites, vol. 9, no. 10, 200 . https://doi.org/10.3390/metabo9100200
Metabolites, Vol 9, Iss 10, p 200 (2019)
Metabolites
Stanstrup, J, Broeckling, C D, Helmus, R, Hoffmann, N, Mathé, E, Naake, T, Nicolotti, L, Peters, K, Rainer, J, Salek, R M, Schulze, T, Schymanski, E L, Stravs, M A, Thévenot, E A, Treutler, H, Weber, R J M, Willighagen, E, Witting, M & Neumann, S 2019, ' The metaRbolomics Toolbox in Bioconductor and beyond ', Metabolites, vol. 9, no. 10, 200 . https://doi.org/10.3390/metabo9100200
Metabolites, Vol 9, Iss 10, p 200 (2019)
Metabolomics aims to measure and characterise the complex composition of metabolites in a biological system. Metabolomics studies involve sophisticated analytical techniques such as mass spectrometry and nuclear magnetic resonance spectroscopy, and g
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ed781c2e114a56bf11a588d03c669cbd
https://push-zb.helmholtz-muenchen.de/frontdoor.php?source_opus=56962
https://push-zb.helmholtz-muenchen.de/frontdoor.php?source_opus=56962