Area of research
Cellular and Molecular Neuroscience · Cognitive Neuroscience
Research interest
Research interests include Neuroscience and Neuropharmacology Research, Neural dynamics and brain function, Photoreceptor and optogenetics research, and Memory and Neural Mechanisms.
Distinct Modulation of <i>I</i> <sub>h</sub> by Synaptic Potentiation in Excitatory and Inhibitory Neurons
The postnatal GABA shift: A developmental perspective
The continued need for animals to advance brain research
Axonal CB1 Receptors Mediate Inhibitory Bouton Formation via cAMP Increase and PKA
Centrosome‐mediated microtubule remodeling during axon formation in human iPSC‐derived neurons
Network control through coordinated inhibition
How the COVID-19 pandemic highlights the necessity of animal research
Quantitative mapping of transcriptome and proteome dynamics during polarization of human iPSC-derived neurons
Reduction of Dendritic Inhibition in CA1 Pyramidal Neurons in Amyloidosis Models of Early Alzheimer’s Disease
Endocannabinoid Signaling Mediates Local Dendritic Coordination between Excitatory and Inhibitory Synapses
Single Synapse LTP: A Matter of Context?
Chloride transporters and GABA polarity in developmental, neurological and psychiatric conditions
A BDNF-Mediated Push-Pull Plasticity Mechanism for Synaptic Clustering
Activity-Dependent Actin Remodeling at the Base of Dendritic Spines Promotes Microtubule Entry
Repetitive magnetic stimulation induces plasticity of inhibitory synapses
Autoantibody pathogenicity in a multifocal motor neuropathy induced pluripotent stem cell–derived model
Nogo‐<scp>A</scp> controls structural plasticity at dendritic spines by rapidly modulating actin dynamics
Positioning of AMPA Receptor-Containing Endosomes Regulates Synapse Architecture
Barriers in the brain: resolving dendritic spine morphology and compartmentalization
Inhibitory synaptic plasticity: spike timing-dependence and putative network function
Structural plasticity of GABAergic axons is regulated by network activity and GABAA receptor activation