Area of research
Sensory Systems · Cellular and Molecular Neuroscience
Research interest
Research interests include Hearing, Cochlea, Tinnitus, Genetics, Single-cell and spatial transcriptomics, Zebrafish Biomedical Research Applications, and Axon Guidance and Neuronal Signaling.
The rise of cochlear gene therapy
Schwann cell precursors represent a neural crest‐like state with biased multipotency
Single-cell RNA-sequencing analysis of the developing mouse inner ear identifies molecular logic of auditory neuron diversification
Genome-wide association meta-analysis identifies 48 risk variants and highlights the role of the stria vascularis in hearing loss
Distinct subtypes of proprioceptive dorsal root ganglion neurons regulate adaptive proprioception in mice
Theory of branching morphogenesis by local interactions and global guidance
Molecular design of hypothalamus development
Single cell RNA sequencing identifies early diversity of sensory neurons forming via bi-potential intermediates
Schwann Cell Precursors Generate the Majority of Chromaffin Cells in Zuckerkandl Organ and Some Sympathetic Neurons in Paraganglia
PRDM12 Is Required for Initiation of the Nociceptive Neuron Lineage during Neurogenesis
Neuronal heterogeneity and stereotyped connectivity in the auditory afferent system
Multipotent peripheral glial cells generate neuroendocrine cells of the adrenal medulla
miR-183 cluster scales mechanical pain sensitivity by regulating basal and neuropathic pain genes
Ephrin-A5/EphA4 signalling controls specific afferent targeting to cochlear hair cells
Molecular interactions underlying the specification of sensory neurons
Positional differences of axon growth rates between sensory neurons encoded by runx3