Search research articles
Contact Us
Filters
Showing results (11-20 of 35) with videos related to
Page
of 4
Sort By:
Elife
|
December 3, 2024
The potassium channel subunit K<sub>V</sub>1.8 (<i>Kcna10</i>) is essential for the distinctive outwardly rectifying conductances of type I and II vestibular hair cells
Hannah R Martin, Anna Lysakowski, Ruth Anne Eatock
Biorxiv : the Preprint Server for Biology
|
December 4, 2023
The potassium channel subunit K<sub>V</sub>1.8 (<i>Kcna10</i>) is essential for the distinctive outwardly rectifying conductances of type I and II vestibular hair cells
Hannah R Martin, Anna Lysakowski, Ruth Anne Eatock
Journal of the Association for Research in Otolaryngology : JARO
|
October 20, 2004
Differences between the negatively activating potassium conductances of Mammalian cochlear and vestibular hair cells
Weng Hoe Wong, Karen M Hurley, Ruth Anne Eatock
Audiology & Neuro-Otology
|
March 27, 2002
Mechanoelectrical and voltage-gated ion channels in mammalian vestibular hair cells
Ruth Anne Eatock, Karen M Hurley, Melissa A Vollrath
Journal of Neurophysiology
|
July 5, 2003
Voltage-gated calcium channel currents in type I and type II hair cells isolated from the rat crista
Hong Bao, Weng Hoe Wong, Jay M Goldberg, et al.
Journal of the Association for Research in Otolaryngology : JARO
|
August 6, 2014
Distribution of Na,K-ATPase α subunits in rat vestibular sensory epithelia
Olga Schuth, Will J McLean, Ruth Anne Eatock, et al.
Journal of Neurophysiology
|
December 6, 2002
Regional analysis of whole cell currents from hair cells of the turtle posterior crista
Alan M Brichta, Anne Aubert, Ruth Anne Eatock, et al.
Annals of Biomedical Engineering
|
September 1, 2005
Mechanosensitive channels in the lateral wall can enhance the cochlear outer hair cell frequency response
Alexander A Spector, Aleksander S Popel, Ruth Anne Eatock, et al.
Development (Cambridge, England)
|
November 2, 2016
Distinct capacity for differentiation to inner ear cell types by progenitor cells of the cochlea and vestibular organs
Will J McLean, Dalton T McLean, Ruth Anne Eatock, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
January 3, 2023
Nonquantal transmission at the vestibular hair cell-calyx synapse: K<sub>LV</sub> currents modulate fast electrical and slow K<sup>+</sup> potentials
Aravind Chenrayan Govindaraju, Imran H Quraishi, Anna Lysakowski, et al.
Page
of 4
Search research articles
Search
Showing results (11-20 of 35) with videos related to
Sort By:
Page
of 4
Elife
|
December 3, 2024
The potassium channel subunit K<sub>V</sub>1.8 (<i>Kcna10</i>) is essential for the distinctive outwardly rectifying conductances of type I and II vestibular hair cells
Hannah R Martin, Anna Lysakowski, Ruth Anne Eatock
Biorxiv : the Preprint Server for Biology
|
December 4, 2023
The potassium channel subunit K<sub>V</sub>1.8 (<i>Kcna10</i>) is essential for the distinctive outwardly rectifying conductances of type I and II vestibular hair cells
Hannah R Martin, Anna Lysakowski, Ruth Anne Eatock
Journal of the Association for Research in Otolaryngology : JARO
|
October 20, 2004
Differences between the negatively activating potassium conductances of Mammalian cochlear and vestibular hair cells
Weng Hoe Wong, Karen M Hurley, Ruth Anne Eatock
Audiology & Neuro-Otology
|
March 27, 2002
Mechanoelectrical and voltage-gated ion channels in mammalian vestibular hair cells
Ruth Anne Eatock, Karen M Hurley, Melissa A Vollrath
Journal of Neurophysiology
|
July 5, 2003
Voltage-gated calcium channel currents in type I and type II hair cells isolated from the rat crista
Hong Bao, Weng Hoe Wong, Jay M Goldberg, et al.
Journal of the Association for Research in Otolaryngology : JARO
|
August 6, 2014
Distribution of Na,K-ATPase α subunits in rat vestibular sensory epithelia
Olga Schuth, Will J McLean, Ruth Anne Eatock, et al.
Journal of Neurophysiology
|
December 6, 2002
Regional analysis of whole cell currents from hair cells of the turtle posterior crista
Alan M Brichta, Anne Aubert, Ruth Anne Eatock, et al.
Annals of Biomedical Engineering
|
September 1, 2005
Mechanosensitive channels in the lateral wall can enhance the cochlear outer hair cell frequency response
Alexander A Spector, Aleksander S Popel, Ruth Anne Eatock, et al.
Development (Cambridge, England)
|
November 2, 2016
Distinct capacity for differentiation to inner ear cell types by progenitor cells of the cochlea and vestibular organs
Will J McLean, Dalton T McLean, Ruth Anne Eatock, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
January 3, 2023
Nonquantal transmission at the vestibular hair cell-calyx synapse: K<sub>LV</sub> currents modulate fast electrical and slow K<sup>+</sup> potentials
Aravind Chenrayan Govindaraju, Imran H Quraishi, Anna Lysakowski, et al.
Page
of 4