Explore how molecular dynamics simulations reveal the atomic-scale mechanisms of plastic deformation nucleation in stressed crystallites under irradiation
Explore the science behind highly cited research papers based on 60 years of data from the Journal of Chemical Information and Modeling
Explore how biomolecular simulations reveal the atomic-level mechanisms of life, from protein folding to drug discovery and enzyme catalysis.
Explore how single-cell transcriptomics is revolutionizing biology by mapping every cell type in complex organisms and tracing developmental lineages.
Discover how scientists are targeting DNA damage response mechanisms, specifically Exonuclease 1 regulation, to develop innovative cancer therapies.
Exploring how parasitology evolved at the turn of the millennium, facing reproducibility challenges while embracing new technologies to combat ancient diseases.
Discover how molecular dynamics simulations revealed the hidden 150-loop in neuraminidase, opening new possibilities for antiviral drug design against influenza viruses.
Exploring Professor Tang Yan-Cheng's groundbreaking contributions to systematic and evolutionary biology through molecular phylogenetics and biogeography.
Exploring how the thin, dynamic layer of water that touches biomaterials first shapes medical implants, drug delivery systems, and artificial organs.
Exploring how tribology and friction control at the nanoscale is revolutionizing modern manufacturing and technology.