Area of research
Cellular and Molecular Neuroscience · Molecular Biology
Research interest
Research interests include Photoreceptor and optogenetics research, Neural dynamics and brain function, TGF-β signaling in diseases, and Neuroscience and Neuropharmacology Research.
Voltage imaging in the olfactory bulb using transgenic mouse lines expressing the genetically encoded voltage indicator ArcLight
A collection of genetic mouse lines and related tools for inducible and reversible intersectional misexpression
Voltage imaging using transgenic mouse lines expressing the GEVI ArcLight in two olfactory cell types
Genetic Identification of Vagal Sensory Neurons That Control Feeding
Voltage imaging and optogenetics reveal behaviour-dependent changes in hippocampal dynamics
A gut-to-brain signal of fluid osmolarity controls thirst satiation
A collection of genetic mouse lines and related tools for inducible and reversible intersectional misexpression
Shared and distinct transcriptomic cell types across neocortical areas
A Suite of Transgenic Driver and Reporter Mouse Lines with Enhanced Brain-Cell-Type Targeting and Functionality
Cell-nonautonomous local and systemic responses to cell arrest enable long-bone catch-up growth in developing mice
All-optical electrophysiology reveals brain-state dependent changes in hippocampal subthreshold dynamics and excitability
A Suite of Transgenic Driver and Reporter Mouse Lines with Enhanced Brain Cell Type Targeting and Functionality
Generation of a whole-brain atlas for the cholinergic system and mesoscopic projectome analysis of basal forebrain cholinergic neurons
Shared and distinct transcriptomic cell types across neocortical areas
Dynamics of embryonic stem cell differentiation inferred from single-cell transcriptomics show a series of transitions through discrete cell states
An R-CaMP1.07 reporter mouse for cell-type-specific expression of a sensitive red fluorescent calcium indicator
Local processing in neurites of VGluT3-expressing amacrine cells differentially organizes visual information
A suite of transgenic driver and reporter mouse lines with enhanced brain cell type targeting and functionality
Local processing of visual information in neurites of VGluT3-expressing amacrine cells
Author response: Dynamics of embryonic stem cell differentiation inferred from single-cell transcriptomics show a series of transitions through discrete cell states
Author response: Local processing in neurites of VGluT3-expressing amacrine cells differentially organizes visual information
Adult mouse cortical cell taxonomy revealed by single cell transcriptomics
Genetically Targeted All-Optical Electrophysiology with a Transgenic Cre-Dependent Optopatch Mouse
Transgenic Mice for Intersectional Targeting of Neural Sensors and Effectors with High Specificity and Performance
Experience-Dependent Remodeling of Basket Cell Networks in the Dentate Gyrus
Olfactory cortical neurons read out a relative time code in the olfactory bulb
A toolbox of Cre-dependent optogenetic transgenic mice for light-induced activation and silencing
A Cre-Dependent GCaMP3 Reporter Mouse for Neuronal Imaging<i>In Vivo</i>
Mouse transgenic approaches in optogenetics