Ke Xu

16 articles listing Ke Xu in Nature Communications, Nature, PNAS, Science Advances, indexed by Paperzzz from Crossref and OSF.

  1. Cellular hallmarks and aging clock of the human lung parenchyma Nature Communications
  2. Interpretable spatial multi-omics data integration and dimensionality reduction with SpaMV Nature Communications
  3. Mapping histologic and functional maturation of human endocrine pancreas across early postnatal periods Nature Communications
  4. Plasticity in brittle intermetallics enabled by framework of amorphous interfaces and preexisting dislocations Science Advances
  5. Heterogeneous endocrine cell composition defines human islet functional phenotypes Nature Communications
  6. Electronic origin of reorganization energy in interfacial electron transfer Nature
  7. Low dose IL-2 therapy restores regulatory T cells in patients with systemic lupus erythematosus in a dose-dependent manner: a phase IIb trial Nature Communications
  8. Active learning in latent spaces enables rapid inverse design of ferroelectric ceramics for energy storage Nature Communications
  9. Bistable origami thermal switch with high switching ratios Nature Communications
  10. Class-I myosin responds to changes in membrane tension during clathrin-mediated endocytosis in human induced pluripotent stem cells PNAS
  11. Structural basis of pausing during transcription initiation in mycobacterium tuberculosis Nature Communications
  12. Central amygdala single-nucleus atlas reveals chromatin and gene transcription dynamics in human alcohol use disorder Nature Communications
  13. Direct microsecond wide-field single-molecule tracking and super-resolution mapping via CCD vertical shift Nature Communications
  14. Fast and robust drift correction for single-molecule localization microscopy Nature Communications
  15. The chronODE framework for modelling multi-omic time series with ordinary differential equations and machine learning Nature Communications
  16. Single cell profiling of human airway identifies tuft-ionocyte progenitor cells displaying cytokine-dependent differentiation bias in vitro Nature Communications