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Journal Abstract Search


437 related items for PubMed ID: 26561606

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  • 2. CaV3.2 T-type Ca²⁺ channels in H₂S-mediated hypoxic response of the carotid body.
    Makarenko VV, Peng YJ, Yuan G, Fox AP, Kumar GK, Nanduri J, Prabhakar NR.
    Am J Physiol Cell Physiol; 2015 Jan 15; 308(2):C146-54. PubMed ID: 25377087
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  • 6. Role of oxidative stress-induced endothelin-converting enzyme activity in the alteration of carotid body function by chronic intermittent hypoxia.
    Peng YJ, Nanduri J, Raghuraman G, Wang N, Kumar GK, Prabhakar NR.
    Exp Physiol; 2013 Nov 15; 98(11):1620-30. PubMed ID: 23913764
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  • 14. Rearrangement of cell types in the rat carotid body neurogenic niche induced by chronic intermittent hypoxia.
    Caballero-Eraso C, Colinas O, Sobrino V, González-Montelongo R, Cabeza JM, Gao L, Pardal R, López-Barneo J, Ortega-Sáenz P.
    J Physiol; 2023 Mar 15; 601(5):1017-1036. PubMed ID: 36647759
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  • 17. CO(2) and pH independently modulate L-type Ca(2+) current in rabbit carotid body glomus cells.
    Summers BA, Overholt JL, Prabhakar NR.
    J Neurophysiol; 2002 Aug 15; 88(2):604-12. PubMed ID: 12163513
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  • 19. Induction of sensory long-term facilitation in the carotid body by intermittent hypoxia: implications for recurrent apneas.
    Peng YJ, Overholt JL, Kline D, Kumar GK, Prabhakar NR.
    Proc Natl Acad Sci U S A; 2003 Aug 19; 100(17):10073-8. PubMed ID: 12907705
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