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Ebenezer N. Yamoah

University of Nevada, Reno · US
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.
h-index
38
citations
6,787
works
200
NIH funding
primary concept
email

Recent publications

The Piezo channel is a mechano-sensitive complex component in the mammalian inner ear hair cell
Nature Communications 2024cited by 28position: lastdoi
Atomistic mechanisms of the regulation of small-conductance Ca <sup>2+</sup> -activated K <sup>+</sup> channel (SK2) by PIP2
Proceedings of the National Academy of Sciences 2024cited by 11position: middledoi
Disruption of mitochondria–sarcoplasmic reticulum microdomain connectomics contributes to sinus node dysfunction in heart failure
Proceedings of the National Academy of Sciences 2022cited by 41position: middledoi
Repressor element 1-silencing transcription factor deficiency yields profound hearing loss through Kv7.4 channel upsurge in auditory neurons and hair cells
eLife 2022cited by 4position: middledoi
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
bioRxiv (Cold Spring Harbor Laboratory) 2022cited by 0position: middledoi
Author response: Repressor element 1-silencing transcription factor deficiency yields profound hearing loss through Kv7.4 channel upsurge in auditory neurons and hair cells
2022cited by 0position: middledoi
Abstract EC104: Mitochondrial Microdomain Disruption Results In Sinus Node Dysfunction In Heart Failure
Circulation Research 2022cited by 0position: middledoi
Association between Cav3 channel upregulation in spiral ganglion neurons and age-dependent hearing loss
Experimental Gerontology 2021cited by 8position: middledoi
Cooperativity of K <sub>v</sub> 7.4 channels confers ultrafast electromechanical sensitivity and emergent properties in cochlear outer hair cells
Science Advances 2020cited by 35position: lastdoi
Altered Outer Hair Cell Mitochondrial and Subsurface Cisternae Connectomics Are Candidate Mechanisms for Hearing Loss in Mice
Journal of Neuroscience 2020cited by 27position: lastdoi
Age-Dependent Up-Regulation of HCN Channels in Spiral Ganglion Neurons Coincide With Hearing Loss in Mice
Frontiers in Aging Neuroscience 2018cited by 21position: middledoi
Etiology of distinct membrane excitability in pre- and posthearing auditory neurons relies on activity of Cl <sup>−</sup> channel TMEM16A
Proceedings of the National Academy of Sciences 2015cited by 20position: lastdoi
Functional Significance of K+ Channel β-Subunit KCNE3 in Auditory Neurons
Journal of Biological Chemistry 2014cited by 23position: lastdoi
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
Journal of Neuroscience 2014cited by 17position: lastdoi
Adenylyl Cyclase Subtype–Specific Compartmentalization
Circulation Research 2013cited by 81position: middledoi
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
Journal of Neurophysiology 2013cited by 29position: lastdoi
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
PLoS ONE 2013cited by 0position: lastdoi
Posthearing Ca<sup>2+</sup>Currents and Their Roles in Shaping the Different Modes of Firing of Spiral Ganglion Neurons
Journal of Neuroscience 2012cited by 37position: lastdoi
Functional Features of Trans-Differentiated Hair Cells Mediated by Atoh1 Reveals a Primordial Mechanism
Journal of Neuroscience 2012cited by 34position: lastdoi

Grants

Synaptic Mechanisms for Classical Conditioning
NSF0317123$312,3392003–2006PIRePORTER
Synapse-Specific Components of Classical Conditioning
NSF0196080$120,0332000–2002PIRePORTER
Synapse-Specific Components of Classical Conditioning
NSF9817196$168,8691999–2001PIRePORTER

Frequent collaborators

Ping Lv · Hebei Medical University11 papers (2012–2022)Nipavan Chiamvimonvat · University of Arizona8 papers (2013–2024)Hyo Jeong Kim · Hallym University7 papers (2012–2024)Jeong‐Han Lee · SK Group (United States)6 papers (2014–2024)Wenying Wang · Lanzhou University of Technology6 papers (2012–2020)Haitao Shen · Xinjiang Production and Construction Corps5 papers (2012–2022)Mingshun Lu · Hebei Medical University5 papers (2018–2022)Maria Cristina Perez Flores · University of Nevada, Reno4 papers (2014–2024)Guy Perkins · University of California San Diego4 papers (2020–2024)Phung N. Thai · University of California, Davis4 papers (2022–2024)Valeriy Timofeyev · University of California, Davis4 papers (2013–2022)Choong-Ryoul Sihn · University of California, Davis4 papers (2012–2015)Xiao-Dong Zhang · University of California, Davis4 papers (2020–2024)Fei Wang · Hebei Medical University4 papers (2021–2022)Jiaxi Liu · Shanghai Jiao Tong University4 papers (2021–2022)Haichao Yang · Harbin Engineering University3 papers (2022–2022)Padmini Sirish · University of California, Davis3 papers (2013–2024)Pauline Trinh · University of California, Davis3 papers (2022–2024)Xueya Ma · Hebei Medical University3 papers (2022–2022)Noel J. Buckley · King's College London3 papers (2022–2022)