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Brain Research|January 15, 1996
Heterogeneity in cytosolic calcium responses to hypoxia in carotid body cellsG R Bright, F H Agani, U Haque, et al.Journal of Neurophysiology|March 11, 2000
HERG-Like potassium current regulates the resting membrane potential in glomus cells of the rabbit carotid bodyJ L Overholt, E Ficker, T Yang, et al.Advances in Experimental Medicine and Biology|June 13, 2000
Chemosensing at the carotid body. Involvement of a HERG-like potassium current in glomus cellsJ L Overholt, E Ficker, T Yang, et al.Journal of Neurophysiology|November 14, 1997
Ca2+ current in rabbit carotid body glomus cells is conducted by multiple types of high-voltage-activated Ca2+ channelsJ L Overholt, N R PrabhakarJournal of Neurophysiology|January 23, 1999
Norepinephrine inhibits a toxin resistant Ca2+ current in carotid body glomus cells: evidence for a direct G protein mechanismJ L Overholt, N R PrabhakarRespiration Physiology|September 1, 2000
Cellular mechanisms of oxygen sensing at the carotid body: heme proteins and ion channelsN R Prabhakar, J L OverholtThe American Journal of Physiology|June 5, 1998
Release of dopamine and norepinephrine by hypoxia from PC-12 cellsG K Kumar, J L Overholt, G R Bright, et al.Journal of Neurophysiology|September 9, 2000
Augmentation of L-type calcium current by hypoxia in rabbit carotid body glomus cells: evidence for a PKC-sensitive pathwayB A Summers, J L Overholt, N R PrabhakarJournal of Neurophysiology|April 14, 1999
Nitric oxide inhibits L-type Ca2+ current in glomus cells of the rabbit carotid body via a cGMP-independent mechanismB A Summers, J L Overholt, N R PrabhakarAdvances in Experimental Medicine and Biology|June 13, 2000
Augmentation of calcium current by hypoxia in carotid body glomus cellsB A Summers, J L Overholt, N R PrabhakarPageof 10