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Journal of Computer-Aided Molecular Design
|
October 9, 2016
Predicting binding poses and affinities for protein - ligand complexes in the 2015 D3R Grand Challenge using a physical model with a statistical parameter estimation
Sergei Grudinin, Maria Kadukova, Andreas Eisenbarth, et al.
Frontiers in Molecular Biosciences
|
December 12, 2022
Increasing quantitation in spatial single-cell metabolomics by using fluorescence as ground truth
Martijn R Molenaar, Mohammed Shahraz, Jeany Delafiori, et al.
Cell
|
September 6, 2025
HT SpaceM: A high-throughput and reproducible method for small-molecule single-cell metabolomics
Jeany Delafiori, Mohammed Shahraz, Andreas Eisenbarth, et al.
Biorxiv : the Preprint Server for Biology
|
March 11, 2024
<sup>13</sup>C-SpaceM: Spatial single-cell isotope tracing reveals heterogeneity of <i>de novo</i> fatty acid synthesis in cancer
Elena Buglakova, Måns Ekelöf, Michaela Schwaiger-Haber, et al.
Nature Metabolism
|
September 9, 2024
Spatial single-cell isotope tracing reveals heterogeneity of de novo fatty acid synthesis in cancer
Elena Buglakova, Måns Ekelöf, Michaela Schwaiger-Haber, et al.
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of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Journal of Computer-Aided Molecular Design
|
October 9, 2016
Predicting binding poses and affinities for protein - ligand complexes in the 2015 D3R Grand Challenge using a physical model with a statistical parameter estimation
Sergei Grudinin, Maria Kadukova, Andreas Eisenbarth, et al.
Frontiers in Molecular Biosciences
|
December 12, 2022
Increasing quantitation in spatial single-cell metabolomics by using fluorescence as ground truth
Martijn R Molenaar, Mohammed Shahraz, Jeany Delafiori, et al.
Cell
|
September 6, 2025
HT SpaceM: A high-throughput and reproducible method for small-molecule single-cell metabolomics
Jeany Delafiori, Mohammed Shahraz, Andreas Eisenbarth, et al.
Biorxiv : the Preprint Server for Biology
|
March 11, 2024
<sup>13</sup>C-SpaceM: Spatial single-cell isotope tracing reveals heterogeneity of <i>de novo</i> fatty acid synthesis in cancer
Elena Buglakova, Måns Ekelöf, Michaela Schwaiger-Haber, et al.
Nature Metabolism
|
September 9, 2024
Spatial single-cell isotope tracing reveals heterogeneity of de novo fatty acid synthesis in cancer
Elena Buglakova, Måns Ekelöf, Michaela Schwaiger-Haber, et al.
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of 1