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Summary Anatomy Item Literature (4079) Expression Attributions Wiki
XB-ANAT-3714

Papers associated with right (and sh2b2)

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Functional Characterization of a Spectrum of Novel Romano-Ward Syndrome KCNQ1 Variants., Rinné S., Int J Mol Sci. January 10, 2023; 24 (2):                       


Heterologous functional expression of ascidian Nav1 channels and close relationship with the evolutionary ancestor of vertebrate Nav channels., Kawai T., J Biol Chem. January 1, 2021; 296 100783.                  


STRAP regulates alternative splicing fidelity during lineage commitment of mouse embryonic stem cells., Jin L., Nat Commun. November 23, 2020; 11 (1): 5941.                


Action potentials in Xenopus oocytes triggered by blue light., Walther F., J Gen Physiol. May 4, 2020; 152 (5):                               


Facilitation of IKr current by some hERG channel blockers suppresses early afterdepolarizations., Furutani K., J Gen Physiol. February 4, 2019; 151 (2): 214-230.                      


A Xenopus oocyte model system to study action potentials., Corbin-Leftwich A., J Gen Physiol. November 5, 2018; 150 (11): 1583-1593.            


High frequency neural spiking and auditory signaling by ultrafast red-shifted optogenetics., Mager T., Nat Commun. May 1, 2018; 9 (1): 1750.            


Damage-free peripheral nerve stimulation by 12-ns pulsed electric field., Casciola M., Sci Rep. September 5, 2017; 7 (1): 10453.          


A novel synaptic plasticity rule explains homeostasis of neuromuscular transmission., Ouanounou G., Elife. May 3, 2016; 5                                 


Venus Flytrap HKT1-Type Channel Provides for Prey Sodium Uptake into Carnivorous Plant Without Conflicting with Electrical Excitability., Böhm J., Mol Plant. March 7, 2016; 9 (3): 428-436.        


A non-inactivating high-voltage-activated two-pore Na⁺ channel that supports ultra-long action potentials and membrane bistability., Cang C., Nat Commun. September 26, 2014; 5 5015.              


High-fidelity optical reporting of neuronal electrical activity with an ultrafast fluorescent voltage sensor., St-Pierre F., Nat Neurosci. June 1, 2014; 17 (6): 884-9.      

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