Area of research
Cellular and Molecular Neuroscience · Physiology
Research interest
Research interests include Pain Mechanisms and Treatments, Nerve injury and regeneration, Neuropeptides and Animal Physiology, and Ion channel regulation and function.
Directionality of developing skeletal muscles is set by mechanical forces
Schwann cell precursors represent a neural crest‐like state with biased multipotency
Single-cell transcriptomics of human embryos identifies multiple sympathoblast lineages with potential implications for neuroblastoma origin
Dental cell type atlas reveals stem and differentiated cell types in mouse and human teeth
Secondary ossification center induces and protects growth plate structure
Spatiotemporal structure of cell fate decisions in murine neural crest
A radical switch in clonality reveals a stem cell niche in the epiphyseal growth plate
Schwann Cell Precursors Generate the Majority of Chromaffin Cells in Zuckerkandl Organ and Some Sympathetic Neurons in Paraganglia
Schwann cell precursors contribute to skeletal formation during embryonic development in mice and zebrafish
Signals from the brain and olfactory epithelium control shaping of the mammalian nasal capsule cartilage
Multipotent peripheral glial cells generate neuroendocrine cells of the adrenal medulla
Oriented clonal cell dynamics enables accurate growth and shaping of vertebrate cartilage
Heterogeneity and Developmental Connections between Cell Types Inhabiting Teeth
Analysis of neural crest–derived clones reveals novel aspects of facial development
The Nervous System Orchestrates and Integrates Craniofacial Development: A Review
Glial origin of mesenchymal stem cells in a tooth model system
Parasympathetic neurons originate from nerve-associated peripheral glial progenitors
The concept of in vivo airway tissue engineering
Coenzyme Q10 prevents peripheral neuropathy and attenuates neuron loss in the <i>db</i> <sup>−</sup> <i>/db</i> <sup>−</sup> mouse, a type 2 diabetes model