Area of research
Cell Biology · Cellular and Molecular Neuroscience
Research interest
Research interests include Zebrafish Biomedical Research Applications, Neuroscience and Neuropharmacology Research, Neurogenesis and neuroplasticity mechanisms, and Neuroscience of respiration and sleep.
A hypothalamus–brainstem circuit governs the prioritization of safety over essential needs
Basal ganglia–spinal cord pathway that commands locomotor gait asymmetries in mice
Pedunculopontine Chx10+ neurons control global motor arrest in mice
Deconstructing the modular organization and real-time dynamics of mammalian spinal locomotor networks
Brainstem Circuits for Locomotion
Targeted activation of midbrain neurons restores locomotor function in mouse models of parkinsonism
Locomotor deficits in a mouse model of ALS are paralleled by loss of V1-interneuron connections onto fast motor neurons
Distinct subtypes of proprioceptive dorsal root ganglion neurons regulate adaptive proprioception in mice
Author Correction: A community-based transcriptomics classification and nomenclature of neocortical cell types
Brainstem neurons that command mammalian locomotor asymmetries
A community-based transcriptomics classification and nomenclature of neocortical cell types
Publisher Correction: A community-based transcriptomics classification and nomenclature of neocortical cell types
Neuronal atlas of the dorsal horn defines its architecture and links sensory input to transcriptional cell types
Midbrain circuits that set locomotor speed and gait selection
Spinal Hb9::Cre-derived excitatory interneurons contribute to rhythm generation in the mouse
Spatiotemporal correlation of spinal network dynamics underlying spasms in chronic spinalized mice
Decoding the organization of spinal circuits that control locomotion
Phenotypic Characterization of Speed-Associated Gait Changes in Mice Reveals Modular Organization of Locomotor Networks
Descending Command Neurons in the Brainstem that Halt Locomotion
Organization of left–right coordination of neuronal activity in the mammalian spinal cord: Insights from computational modelling
The retrotrapezoid nucleus neurons expressing Atoh1 and Phox2b are essential for the respiratory response to CO2
Editorial overview: Motor circuits and action
Neuronal calcium-binding proteins 1/2 localize to dorsal root ganglia and excitatory spinal neurons and are regulated by nerve injury
Spinal Glutamatergic Neurons Defined by EphA4 Signaling Are Essential Components of Normal Locomotor Circuits
Dual-mode operation of neuronal networks involved in left–right alternation
Locomotor Rhythm Generation Linked to the Output of Spinal Shox2 Excitatory Interneurons
Optogenetic dissection reveals multiple rhythmogenic modules underlying locomotion