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Journal Abstract Search


302 related items for PubMed ID: 633148

  • 1. Membrane potential, resistance, and intercellular communication in the lacrimal gland: effects of acetylcholine and adrenaline.
    Iwatsuki N, Petersen OH.
    J Physiol; 1978 Feb; 275():507-20. PubMed ID: 633148
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  • 2. Membrane potential and resistance measurement in acinar cells from salivary glands in vitro: effect of acetylcholine.
    Nishiyama A, Petersen OH.
    J Physiol; 1974 Oct; 242(1):173-88. PubMed ID: 4436820
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  • 3. Pancreatic acinar cells: the acetylcholine equilibrium potential and its ionic dependency.
    Iwatsuki N, Petersen OH.
    J Physiol; 1977 Aug; 269(3):735-51. PubMed ID: 894613
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  • 9. Pancreatic acinar cells: the role of calcium in stimulus-secretion coupling.
    Petersen OH, Ueda N.
    J Physiol; 1976 Jan; 254(3):583-606. PubMed ID: 815543
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  • 10. Pancreatic acinar cells: localization of acetylcholine receptors and the importance of chloride and calcium for acetylcholine-evoked depolarization.
    Iwatsuki N, Petersen OH.
    J Physiol; 1977 Aug; 269(3):723-33. PubMed ID: 894612
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  • 16. Pancreatic acinar cells: ionic dependence of the membrane potential and acetycholine-induced depolarization.
    Matthews EK, Petersen OH.
    J Physiol; 1973 Jun; 231(2):283-95. PubMed ID: 4352766
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  • 19. Membrane potential measurement in parotid acinar cells.
    Pedersen GL, Petersen OH.
    J Physiol; 1973 Oct; 234(1):217-27. PubMed ID: 4797341
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  • 20. Acetylcholine-induced Na+ influx in the mouse lacrimal gland acinar cells: demonstration of multiple Na+ transport mechanisms by intracellular Na+ activity measurements.
    Saito Y, Ozawa T, Nishiyama A.
    J Membr Biol; 1987 Oct; 98(2):135-44. PubMed ID: 3669067
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