Area of research
Molecular Biology
Research interest
Research focused on Chromatin and Annotation, with related work in Quantum dot, Computational biology, Truck. Notable publications include 'Identifying intracity freight trip ends from heavy truck GPS trajectories', 'Targeted modulation of intestinal epithelial regeneration and immune response in ulcerative colitis using dual-targeting bilirubin nanoparticles', and 'Machine learning–enabled virtual screening indicates the anti-tuberculosis activity of aldoxorubicin and quarfloxin with verification by molecular docking, molecular dynamics...'.
Advancing Ecofriendly Indium Phosphide Quantum Dots: Comprehensive Strategies toward Color-Pure Luminescence for Wide Color Gamut Displays
Effects of Stand Structural Characteristics, Diversity, and Stability on Carbon Storage Across Different Densities in Natural Forests: A Case Study in the Xiaolong Mountains, China
Integration of single-cell and spatial transcriptomics by SEU-TCA reveals the spatial origin of early cardiac progenitors
Machine learning–enabled virtual screening indicates the anti-tuberculosis activity of aldoxorubicin and quarfloxin with verification by molecular docking, molecular dynamics simulations, and biological evaluations
An engineered cellular carrier delivers miR-138–5p to enhance mitophagy and protect hypoxic-injured neurons via the DNMT3A/Rhebl1 axis
Cation engineering modified InP quantum dots for enhanced properties and diversified applications
Boundary-aware convolutional attention network for liver segmentation in ultrasound images
Targeted modulation of intestinal epithelial regeneration and immune response in ulcerative colitis using dual-targeting bilirubin nanoparticles
Functional divergence of CYP76AKs shapes the chemodiversity of abietane-type diterpenoids in genus Salvia
Identifying intracity freight trip ends from heavy truck GPS trajectories
OpenAnnotate: a web server to annotate the chromatin accessibility of genomic regions
OpenAnnotate: a web server to annotate the chromatin accessibility of genomic regions