Area of research
Biophysics · Molecular Biology
Research interest
Research interests include Advanced Fluorescence Microscopy Techniques, Advanced Biosensing Techniques and Applications, Cell Image Analysis Techniques, and Analytical Chemistry and Sensors.
Nance-Horan Syndrome-like 1 protein negatively regulates Scar/WAVE-Arp2/3 activity and inhibits lamellipodia stability and cell migration
Quantitative real-time imaging of intracellular FRET biosensor dynamics using rapid multi-beam confocal FLIM
FMNL2 regulates dynamics of fascin in filopodia
TNFR1 membrane reorganization promotes distinct modes of TNFα signaling
RORγt+ Innate Lymphoid Cells Promote Lymph Node Metastasis of Breast Cancers
NDP52 activates nuclear myosin VI to enhance RNA polymerase II transcription
Functional in vivo imaging using fluorescence lifetime light-sheet microscopy
New high-speed centre of mass method incorporating background subtraction for accurate determination of fluorescence lifetime
Real-time fluorescence lifetime actuation for cell sorting using a CMOS SPAD silicon photomultiplier
PAK4 suppresses PDZ-RhoGEF activity to drive invadopodia maturation in melanoma cells
Fluorescence lifetime imaging (FLIM): Basic concepts and some recent developments
A high speed multifocal multiphoton fluorescence lifetime imaging microscope for live-cell FRET imaging
05 billion events per second time correlated single photon counting using CMOS SPAD arrays
256 × 2 SPAD line sensor for time resolved fluorescence spectroscopy
Effect of Phosphorylation on EGFR Dimer Stability Probed by Single-Molecule Dynamics and FRET/FLIM
The ErbB4 CYT2 variant protects EGFR from ligand-induced degradation to enhance cancer cell motility
Time‐domain microfluidic fluorescence lifetime flow cytometry for high‐throughput <scp>F</scp>örster resonance energy transfer screening
Time-resolved multifocal multiphoton microscope for high speed FRET imaging in vivo
Development of a doubly weighted Gerchberg–Saxton algorithm for use in multibeam imaging applications
A Fluorescent Biosensor Reveals Conformational Changes in Human Immunoglobulin E Fc