Area of research
Cellular and Molecular Neuroscience · Sensory Systems
Research interest
Research interests include Olfactory and Sensory Function Studies, Neurobiology and Insect Physiology Research, Neural dynamics and brain function, and Neuroscience and Neuropharmacology Research.
A spatial code governs olfactory receptor choice and aligns sensory maps in the nose and brain
The composition of motor recovery revealed by syllable-level behavioral analysis after spinal cord injury
A spatial code governs olfactory receptor choice and aligns sensory maps in the nose and brain
Single-cell genomics of the mouse olfactory cortex reveals contrasts with neocortex and ancestral signatures of cell type evolution
Dynamics of striatal action selection and reinforcement learning.
Single-cell genomics of the mouse olfactory cortex reveals contrasts with neocortex and ancestral signatures of cell type evolution.
Spectral envelopes of facial movements predict intention, cortical representations, and neural prosthetic control
Brain wide engraftment of human monocytes induces neurodegeneration and cognitive dysfunction
Dynamics of striatal action selection and reinforcement learning
Altered striatal dopamine dynamics and behavior in <i>Grin2a</i> mutant mice, a genetic mouse model of schizophrenia
Author response: Dynamics of striatal action selection and reinforcement learning
Keypoint-MoSeq: parsing behavior by linking point tracking to pose dynamics.
Explaining dopamine through prediction errors and beyond
Explaining dopamine through prediction errors and beyond.
Thyroid hormone remodels cortex to coordinate body-wide metabolism and exploration
Common principles for odour coding across vertebrates and invertebrates.
Thyroid hormone remodels cortex to coordinate body-wide metabolism and exploration.
Characterizing the structure of mouse behavior using Motion Sequencing.
Metabotropic signaling within somatostatin interneurons controls transient thalamocortical inputs during development.
Dynamics of striatal action selection and reinforcement learning
A Perspective on Neuroscience Data Standardization with Neurodata Without Borders
Dynamics of striatal action selection and reinforcement learning
Systems Neuro Browser (SNUB)
Dynamics of striatal action selection and reinforcement learning
A Perspective on Neuroscience Data Standardization with Neurodata Without Borders.
Concerted modulation of spontaneous behavior and time-integrated whole-brain neuronal activity by serotonin receptors
Spontaneous behaviour is structured by reinforcement without explicit reward
Spontaneous behaviour is structured by reinforcement without explicit reward.
Mouse spontaneous behavior reflects individual variation rather than estrous state.
Brain-region-specific changes in neurons and glia and dysregulation of dopamine signaling in Grin2a mutant mice