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Dirk Valkenborg

Showing results (1-10 of 119) with videos related to

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Statistical Applications in Genetics and Molecular Biology|February 5, 2011
A Markov-chain model for the analysis of high-resolution enzymatically 18O-labeled mass spectraDirk Valkenborg, Tomasz Burzykowski
Journal of the American Society for Mass Spectrometry|February 13, 2014
BRAIN 2.0: time and memory complexity improvements in the algorithm for calculating the isotope distributionPiotr Dittwald, Dirk Valkenborg
Rapid Communications in Mass Spectrometry : RCM|July 9, 2021
Predicting the number of sulfur atoms in peptides and small proteins based on the observed aggregated isotope distributionJürgen Claesen, Dirk Valkenborg, Tomasz Burzykowski
Methods in Molecular Biology (Clifton, N.J.)|April 14, 2019
Experimental Design in Quantitative ProteomicsTomasz Burzykowski, Jürgen Claesen, Dirk Valkenborg
Journal of the American Society for Mass Spectrometry|March 8, 2008
A model-based method for the prediction of the isotopic distribution of peptidesDirk Valkenborg, Ivy Jansen, Tomasz Burzykowski
Journal of Proteome Research|March 25, 2010
Markov-chain-based heteroscedastic regression model for the analysis of high-resolution enzymatically 18O-labeled mass spectraQi Zhu, Dirk Valkenborg, Tomasz Burzykowski
Journal of the American Society for Mass Spectrometry|September 4, 2020
A "Refined Hydrogen Rule" and a "Refined Hydrogen and Halogen Rule" for Organic MoleculesJürgen Claesen, Dirk Valkenborg, Tomasz Burzykowski
Journal of Mass Spectrometry : JMS|April 30, 2019
De novo prediction of the elemental composition of peptides and proteins based on a single massJürgen Claesen, Dirk Valkenborg, Tomasz Burzykowski
Journal of Mass Spectrometry : JMS|December 10, 2019
The (generalized) hydrogen rule for organic moleculesJürgen Claesen, Dirk Valkenborg, Tomasz Burzykowski
Proteomics|December 3, 2023
A compositional data model to predict the isotope distribution for average peptides using a compositional spline modelAnnelies Agten, Frédérique Vilenne, Piotr Prostko, et al.
Pageof 12

Showing results (1-10 of 119) with videos related to

Sort By:
Pageof 12
Statistical Applications in Genetics and Molecular Biology|February 5, 2011
A Markov-chain model for the analysis of high-resolution enzymatically 18O-labeled mass spectraDirk Valkenborg, Tomasz Burzykowski
Journal of the American Society for Mass Spectrometry|February 13, 2014
BRAIN 2.0: time and memory complexity improvements in the algorithm for calculating the isotope distributionPiotr Dittwald, Dirk Valkenborg
Rapid Communications in Mass Spectrometry : RCM|July 9, 2021
Predicting the number of sulfur atoms in peptides and small proteins based on the observed aggregated isotope distributionJürgen Claesen, Dirk Valkenborg, Tomasz Burzykowski
Methods in Molecular Biology (Clifton, N.J.)|April 14, 2019
Experimental Design in Quantitative ProteomicsTomasz Burzykowski, Jürgen Claesen, Dirk Valkenborg
Journal of the American Society for Mass Spectrometry|March 8, 2008
A model-based method for the prediction of the isotopic distribution of peptidesDirk Valkenborg, Ivy Jansen, Tomasz Burzykowski
Journal of Proteome Research|March 25, 2010
Markov-chain-based heteroscedastic regression model for the analysis of high-resolution enzymatically 18O-labeled mass spectraQi Zhu, Dirk Valkenborg, Tomasz Burzykowski
Journal of the American Society for Mass Spectrometry|September 4, 2020
A "Refined Hydrogen Rule" and a "Refined Hydrogen and Halogen Rule" for Organic MoleculesJürgen Claesen, Dirk Valkenborg, Tomasz Burzykowski
Journal of Mass Spectrometry : JMS|April 30, 2019
De novo prediction of the elemental composition of peptides and proteins based on a single massJürgen Claesen, Dirk Valkenborg, Tomasz Burzykowski
Journal of Mass Spectrometry : JMS|December 10, 2019
The (generalized) hydrogen rule for organic moleculesJürgen Claesen, Dirk Valkenborg, Tomasz Burzykowski
Proteomics|December 3, 2023
A compositional data model to predict the isotope distribution for average peptides using a compositional spline modelAnnelies Agten, Frédérique Vilenne, Piotr Prostko, et al.
Pageof 12