Area of research
Cellular and Molecular Neuroscience · Molecular Biology
Research interest
Research interests include Ion channel regulation and function, Neuroscience and Neuropharmacology Research, Cardiac electrophysiology and arrhythmias, and Neural dynamics and brain function.
Increased RyR2 open probability induces neuronal hyperactivity and memory loss with or without Alzheimer's disease-causing gene mutations.
Cannabidiol counters the effects of a dominant-negative pathogenic Kv7.2 variant.
A Clinically Relevant Selective ERK-Pathway Inhibitor Reverses Core Deficits in a Mouse Model of Autism
The Molecular Basis for the Calcium-Dependent Slow Afterhyperpolarization in CA1 Hippocampal Pyramidal Neurons.
Modeling temperature- and Cav3 subtype-dependent alterations in T-type calcium channel mediated burst firing.
Limiting RyR2 Open Time Prevents Alzheimer's Disease-Related Neuronal Hyperactivity and Memory Loss but Not β-Amyloid Accumulation.
FMRP(1-297)-tat restores ion channel and synaptic function in a model of Fragile X syndrome.
Junctophilin Proteins Tether a Cav1-RyR2-KCa3.1 Tripartite Complex to Regulate Neuronal Excitability.
Preferred Formation of Heteromeric Channels between Coexpressed SK1 and IKCa Channel Subunits Provides a Unique Pharmacological Profile of Ca<sup>2+</sup>-Activated Potassium Channels.
Long-Term Potentiation at the Mossy Fiber–Granule Cell Relay Invokes Postsynaptic Second-Messenger Regulation of Kv4 Channels
Signal processing by T-type calcium channel interactions in the cerebellum
Modeling interactions between voltage-gated Ca<sup>2+</sup>channels and KCa1.1 channels
Bistability in Purkinje neurons: Ups and downs in cerebellar research