Area of research
Sensory Systems · Molecular Biology
Research interest
Research interests include Hearing, Cochlea, Tinnitus, Genetics, Ion channel regulation and function, Cardiac electrophysiology and arrhythmias, and Ion Channels and Receptors.
The Piezo channel is a mechano-sensitive complex component in the mammalian inner ear hair cell
Atomistic mechanisms of the regulation of small-conductance Ca <sup>2+</sup> -activated K <sup>+</sup> channel (SK2) by PIP2
Disruption of mitochondria–sarcoplasmic reticulum microdomain connectomics contributes to sinus node dysfunction in heart failure
Repressor element 1-silencing transcription factor deficiency yields profound hearing loss through Kv7.4 channel upsurge in auditory neurons and hair cells
Repressor element 1-silencing transcription factor deficiency yields profound hearing loss through K <sub>v</sub> 7.4 channel upsurge in auditory neurons and hair cells
Author response: Repressor element 1-silencing transcription factor deficiency yields profound hearing loss through Kv7.4 channel upsurge in auditory neurons and hair cells
Abstract EC104: Mitochondrial Microdomain Disruption Results In Sinus Node Dysfunction In Heart Failure
Association between Cav3 channel upregulation in spiral ganglion neurons and age-dependent hearing loss
Cooperativity of K <sub>v</sub> 7.4 channels confers ultrafast electromechanical sensitivity and emergent properties in cochlear outer hair cells
Altered Outer Hair Cell Mitochondrial and Subsurface Cisternae Connectomics Are Candidate Mechanisms for Hearing Loss in Mice
Age-Dependent Up-Regulation of HCN Channels in Spiral Ganglion Neurons Coincide With Hearing Loss in Mice
Etiology of distinct membrane excitability in pre- and posthearing auditory neurons relies on activity of Cl <sup>−</sup> channel TMEM16A
Functional Significance of K+ Channel β-Subunit KCNE3 in Auditory Neurons
Genetic, Cellular, and Functional Evidence for Ca<sup>2+</sup>Inflow through Ca<sub>v</sub>1.2 and Ca<sub>v</sub>1.3 Channels in Murine Spiral Ganglion Neurons
Adenylyl Cyclase Subtype–Specific Compartmentalization
Association of the Kv1 family of K<sup>+</sup> channels and their functional blueprint in the properties of auditory neurons as revealed by genetic and functional analyses
Correction: The Activity of Spontaneous Action Potentials in Developing Hair Cells Is Regulated by Ca<sup>2+</sup>-Dependence of a Transient K<sup>+</sup>Current
Posthearing Ca<sup>2+</sup>Currents and Their Roles in Shaping the Different Modes of Firing of Spiral Ganglion Neurons
Functional Features of Trans-Differentiated Hair Cells Mediated by Atoh1 Reveals a Primordial Mechanism