Area of research
Physiology · Cellular and Molecular Neuroscience
Research interest
Research interests include Neuroscience, Spinal cord, Biology, Interneuron, Dorsum, and Medicine.
Deep sequencing of Phox2a nuclei reveals five classes of anterolateral system neurons
Calretinin-expressing islet cells are a source of pre- and post-synaptic inhibition of non-peptidergic nociceptor input to the mouse spinal cord
Spinal premotor interneurons controlling antagonistic muscles are spatially intermingled
Encoding of cutaneous stimuli by lamina I projection neurons
Immune or Genetic-Mediated Disruption of CASPR2 Causes Pain Hypersensitivity Due to Enhanced Primary Afferent Excitability
Morphological and functional properties distinguish the substance P and gastrin-releasing peptide subsets of excitatory interneuron in the spinal cord dorsal horn
Survival of syngeneic and allogeneic iPSC–derived neural precursors after spinal grafting in minipigs
Immunostaining for Homer reveals the majority of excitatory synapses in laminae I–III of the mouse spinal dorsal horn
Inhibitory Interneurons That Express GFP in the<i>PrP-GFP</i>Mouse Spinal Cord Are Morphologically Heterogeneous, Innervated by Several Classes of Primary Afferent and Include Lamina I Projection Neurons among Their Postsynaptic Targets
Dynorphin Acts as a Neuromodulator to Inhibit Itch in the Dorsal Horn of the Spinal Cord
Presynaptically Localized Cyclic GMP-Dependent Protein Kinase 1 Is a Key Determinant of Spinal Synaptic Potentiation and Pain Hypersensitivity