Area of research
Molecular Biology · Cellular and Molecular Neuroscience
Research interest
Research interests include Neuroscience, Biology, Retina, Retinal, Receptive field, and Inhibitory postsynaptic potential.
Distinctive synaptic structural motifs link excitatory retinal interneurons to diverse postsynaptic partner types
A High-Density Narrow-Field Inhibitory Retinal Interneuron with Direct Coupling to Müller Glia
Conditional and biased regeneration of cone photoreceptor types in the zebrafish retina
Heparan Sulfate Organizes Neuronal Synapses through Neurexin Partnerships
GABA release selectively regulates synapse development at distinct inputs on direction-selective retinal ganglion cells
Stimulation of functional neuronal regeneration from Müller glia in adult mice
Cellular and Circuit Mechanisms Shaping the Perceptual Properties of the Primate Fovea
Establishing Wiring Specificity in Visual System Circuits: From the Retina to the Brain
Selective Vulnerability of Specific Retinal Ganglion Cell Types and Synapses after Transient Ocular Hypertension
Glutamatergic Monopolar Interneurons Provide a Novel Pathway of Excitation in the Mouse Retina
Neurotransmission plays contrasting roles in the maturation of inhibitory synapses on axons and dendrites of retinal bipolar cells
Visual Space Is Represented by Nonmatching Topographies of Distinct Mouse Retinal Ganglion Cell Types
Interplay of Cell-Autonomous and Nonautonomous Mechanisms Tailors Synaptic Connectivity of Converging Axons In Vivo
Wiring patterns in the mouse retina: collecting evidence across the connectome, physiology and light microscopy
Transmission from the dominant input shapes the stereotypic ratio of photoreceptor inputs onto horizontal cells
Cross-synaptic synchrony and transmission of signal and noise across the mouse retina
The spatial structure of a nonlinear receptive field