Area of research
Cell Biology · Condensed Matter Physics
Research interest
Research interests include Microtubule, Biology, Cytoskeleton, Physics, Spindle apparatus, and Nanotechnology.
Mechanics of spindle orientation in human mitotic cells is determined by pulling forces on astral microtubules and clustering of cortical dynein
Laser ablation and fluid flows reveal the mechanism behind spindle and centrosome positioning
Dissipation and energy propagation across scales in an active cytoskeletal material
Physical bioenergetics: Energy fluxes, budgets, and constraints in cells
Developmental Stage Classification of Embryos Using Two-Stream Neural Network with Linear-Chain Conditional Random Field
Probing and manipulating embryogenesis via nanoscale thermometry and temperature control
Stoichiometric interactions explain spindle dynamics and scaling across 100 million years of nematode evolution
A design framework for actively crosslinked filament networks
Self-straining of actively crosslinked microtubule networks
Active matter at the interface between materials science and cell biology
Phosphoinositide 3-Kinase Regulates Glycolysis through Mobilization of Aldolase from the Actin Cytoskeleton
Forces positioning the mitotic spindle: Theories, and now experiments
Active contraction of microtubule networks
Scaling, Selection, and Evolutionary Dynamics of the Mitotic Spindle
Transformation of taxol-stabilized microtubules into inverted tubulin tubules triggered by a tubulin conformation switch