Area of research
Cellular and Molecular Neuroscience · Developmental Neuroscience
Research interest
Research interests include Nerve injury and regeneration, Neurogenesis and neuroplasticity mechanisms, Spinal Cord Injury Research, and Signaling Pathways in Disease.
Single-Nuclei Sequencing Reveals a Robust Corticospinal Response to Nearby Axotomy But Overall Insensitivity to Spinal Injury
Brain-wide analysis of the supraspinal connectome reveals anatomical correlates to functional recovery after spinal injury
Single Nuclei Analyses Reveal Transcriptional Profiles and Marker Genes for Diverse Supraspinal Populations
Single-cell analysis of the cellular heterogeneity and interactions in the injured mouse spinal cord
mGreenLantern: a bright monomeric fluorescent protein with rapid expression and cell filling properties for neuronal imaging
Global Connectivity and Function of Descending Spinal Input Revealed by 3D Microscopy and Retrograde Transduction
3D Visualization of Individual Regenerating Retinal Ganglion Cell Axons Reveals Surprisingly Complex Growth Paths
Reversible silencing of lumbar spinal interneurons unmasks a task-specific network for securing hindlimb alternation
STAT3 and SOCS3 regulate NG2 cell proliferation and differentiation after contusive spinal cord injury
A comparative transcriptomic analysis of astrocytes differentiation from human neural progenitor cells
Detection of Prokaryotic Genes in the Amphimedon queenslandica Genome
3D Imaging of Axons in Transparent Spinal Cords from Rodents and Nonhuman Primates
Neural progenitor cell transplantation promotes neuroprotection, enhances hippocampal neurogenesis, and improves cognitive outcomes after traumatic brain injury
Perivascular Fibroblasts Form the Fibrotic Scar after Contusive Spinal Cord Injury
Genetically modified mesenchymal stem cells (MSCs) promote axonal regeneration and prevent hypersensitivity after spinal cord injury
Mislocalization of neuronal mitochondria reveals regulation of Wallerian degeneration and NMNAT/WLDS-mediated axon protection independent of axonal mitochondria
A multifunctional neurotrophin with reduced affinity to p75NTR enhances transplanted Schwann cell survival and axon growth after spinal cord injury