Area of research
Biophysics · Cell Biology
Research interest
Research interests include Advanced Fluorescence Microscopy Techniques, Cellular transport and secretion, Advanced Electron Microscopy Techniques and Applications, and Graphene research and applications.
Label-Free Interference Microscopy and Single-Molecule Displacement Mapping Elucidate the Microscopic Structure and Dynamics of Stacked Lipid Bilayers.
High-Purity Monovalent Functionalization of Carbon Nanotubes.
Class-I myosin responds to changes in membrane tension during clathrin-mediated endocytosis in human induced pluripotent stem cells.
Electronic origin of reorganization energy in interfacial electron transfer.
High‐Purity Monovalent Functionalization of Carbon Nanotubes
<i>In Situ</i>
Kinetics of Solution-Phase Biomolecular Reactions and Interactions through Single-Molecule Displacement Statistics
Single-molecule live-cell RNA imaging with CRISPR–Csm
Single-molecule live-cell RNA imaging with CRISPR-Csm.
Dynamic molecular architecture of the synaptonemal complex
Dynamic molecular architecture of the synaptonemal complex.
Super-Resolution Mapping and Quantification of Molecular Diffusion via Single-Molecule Displacement/Diffusivity Mapping (SM<i>d</i>M).
Single-Molecule and Super-Resolution Diffusion Quantification Unveils Reversible Enhancement of Lipid-Membrane Diffusivity by General Anesthetics.
SpeedyTrack: Direct microsecond wide-field single-molecule tracking and super-resolution mapping via CCD vertical shift
Direct microsecond wide-field single-molecule tracking and super-resolution mapping via CCD vertical shift.
Class-I myosin responds to changes in membrane tension during clathrin-mediated endocytosis in human induced pluripotent stem cells
Fast and robust drift correction for single-molecule localization microscopy.
Excitation Spectral Phasor Microscopy (ExSPM) unveils spatiotemporal heterogeneities in polarity of intracellular lipid droplets
Local Chromatin Organization and Net Charge Modulate DNA Glycosylase Efficiency in Live Cells
Super-Resolution Diffusivity Mapping Reveals Spatial Correlations Between Lateral Mobility and Structural Heterogeneities on Cellular Membranes
Tau fibrils induce nanoscale membrane damage and nucleate cytosolic tau at lysosomes
Tau fibrils induce nanoscale membrane damage and nucleate cytosolic tau at lysosomes.
Single-Molecule Diffusivity Quantification Unveils Ubiquitous Net Charge-Driven Protein-Protein Interaction.
Single-molecule diffusivity quantification in <i>Xenopus</i> egg extracts elucidates physicochemical properties of the cytoplasm.
STORM Super-Resolution Visualization of Self-Assembled γPFD Chaperone Ultrastructures in <i>Methanocaldococcus jannaschii</i>.
Hypersensitivity of the vimentin cytoskeleton to net-charge states and Coulomb repulsion
Hypersensitivity of the vimentin cytoskeleton to net-charge states and Coulomb repulsion
Mapping super-resolution image quality.
Single-molecule diffusivity quantification in
<i>Xenopus</i>
egg extracts elucidates physicochemical properties of the cytoplasm
Single-molecule live-cell RNA imaging with CRISPR-Csm
Hypersensitivity of the vimentin cytoskeleton to net-charge states and Coulomb repulsion