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Annual Review of Medicine|March 24, 1998
The extracellular calcium-sensing receptor: its role in health and diseaseE M Brown, M Pollak, S C Hebert
Brain Research. Molecular Brain Research|January 29, 2000
Low-voltage-activated calcium channel subunit expression in a genetic model of absence epilepsy in the ratE M Talley, G Solórzano, A Depaulis, et al.
The American Journal of Physiology|July 1, 1996
Cytochrome P-450 metabolites mediate extracellular Ca(2+)-induced inhibition of apical K+ channels in the TALW H Wang, M Lu, S C Hebert
European Journal of Endocrinology|May 1, 1995
Molecular mechanisms underlying the sensing of extracellular Ca2+ by parathyroid and kidney cellsE M Brown, M Pollak, S C Hebert
American Journal of Kidney Diseases : the Official Journal of the National Kidney Foundation|March 1, 1995
Sensing of extracellular Ca2+ by parathyroid and kidney cells: cloning and characterization of an extracellular Ca(2+)-sensing receptorE M Brown, M Pollak, S C Hebert
Radiation Protection Dosimetry|April 8, 2015
How to use the equipment you have for appropriate quality at low radiation doseI A Castellano
Journal of Bacteriology|February 1, 1980
Efflux of beta-galactosidase products from Escherichia coliR E Huber, J Lytton, E B Fung
Molecular Pharmacology|August 15, 2001
Ca(v)3.2 channel is a molecular substrate for inhibition of T-type calcium currents in rat sensory neurons by nitrous oxideS M Todorovic, V Jevtovic-Todorovic, S Mennerick, et al.
American Journal of Physiology. Cell Physiology|February 24, 2001
alpha1H T-type Ca2+ channel is the predominant subtype expressed in bovine and rat zona glomerulosaA D Schrier, H Wang, E M Talley, et al.
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