Area of research
Biophysics · Molecular Biology
Research interest
Research interests include Cell Image Analysis Techniques, Single-cell and spatial transcriptomics, Advanced Fluorescence Microscopy Techniques, and Neural dynamics and brain function.
Connectivity of single neurons classifies cell subtypes in mouse brains
Distinct subnetworks of the mouse anterior thalamic nuclei
Neuronal diversity and stereotypy at multiple scales through whole brain morphometry
Collaborative augmented reconstruction of 3D neuron morphology in mouse and human brains
A guide to the BRAIN Initiative Cell Census Network data ecosystem
Whole human-brain mapping of single cortical neurons for profiling morphological diversity and stereotypy
Full-Spectrum Neuronal Diversity and Stereotypy through Whole Brain Morphometry
Petabyte-Scale Multi-Morphometry of Single Neurons for Whole Brains
Whole Human-Brain Mapping of Single Cortical Neurons for Profiling Morphological Diversity and Stereotypy
Morphological diversity of single neurons in molecularly defined cell types
Cellular anatomy of the mouse primary motor cortex
Cross-modal coherent registration of whole mouse brains
MorphoHub: A Platform for Petabyte-Scale Multi-Morphometry Generation
Cross-Modality Coherent Registration of Whole Mouse Brains
Cellular Anatomy of the Mouse Primary Motor Cortex
Brain-wide single neuron reconstruction reveals morphological diversity in molecularly defined striatal, thalamic, cortical and claustral neuron types
TeraVR empowers precise reconstruction of complete 3-D neuronal morphology in the whole brain
Brain-wide single neuron reconstruction reveals morphological diversity in molecularly defined striatal, thalamic, cortical and claustral neuron types
Disruptive variants of <i>CSDE1</i> associate with autism and interfere with neuronal development and synaptic transmission
Complete Whole-Brain Single Neuron Reconstruction Reveals Morphological Diversity in Molecularly Defined Claustral and Cortical Neuron Types
<i>TeraVR</i> Empowers Precise Reconstruction of Complete 3-D Neuronal Morphology in the Whole Brain