Area of research
Molecular Biology · Plant Science
Research interest
Research focused on Chromatin and Blocking (statistics), with related work in Nanoclusters, Interpretability, Schizophrenia (object-oriented programming). Notable publications include 'Towards novel small-molecule inhibitors blocking PD-1/PD-L1 pathway: From explainable machine learning models to molecular dynamics simulation', 'Linking DNA-packing density distribution and TAD boundary locations', and 'HALOM Method: An Efficient and Accurate Neutron Diffraction‐Independent Approach for Determining Hydrogen Locations in Metal Hydride Nanoclusters'.
HALOM Method: An Efficient and Accurate Neutron Diffraction‐Independent Approach for Determining Hydrogen Locations in Metal Hydride Nanoclusters
Linking DNA-packing density distribution and TAD boundary locations
FragOPT: An ML-Driven Computational Workflow for Rational Fragments Optimization Toward Lead Compounds
Towards novel small-molecule inhibitors blocking PD-1/PD-L1 pathway: From explainable machine learning models to molecular dynamics simulation
Unraveling schizophrenia's genetic complexity through advanced causal inference and chromatin 3D conformation