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1.
Ultrastructural characteristics of the glomus cells in the carotid body of chronically hypoxic rats // Anat. Rec., 1993, Suppl..-С.76

2.
Eiken O. Effects of blood-volume distribution on the characteristics of the carotid baroreflex in humans at rest and during exercise // Acta physiol. scand., 1994. Vol. 150, N 1.-С.89-94

3.
Glomus cell differentiation in the carotid body region of chick embryos studied by neuron-specific class III 'бета'-tubulin isotype and Leu-7 monoclonal antibodies // J. Compar. Neurol., 1994. Vol. 348, N 4.-С.531-543

4.
Buerk D.G. Testing the metabolic hypothesis of O[2] chemoreception in the cat carotid body in vitro // J. Appl. Physiol., 1994. Vol. 76, N 3.-С.1317- 1323

5.
Adrenal response to longterm hypoxia is still increased after carotid body denervation in rat // J. Appl. Physiol., 1994. Vol. 76, N 3.-С.1049-1054

6.
Buckler Keith J. Effects of hypercapnia on membrane potential and intracellular calcium in rat carotid body type I cells // J. Physiol., 1994. Vol. 478, N 1.-С.157-171

7.
Wyatt C.N. Ca{2+}-activated K{+} channels in isolated type I cells of the neonatal rat carotid body // J. Physiol., 1995. Vol. 483, N 3.-С.559-565

8.
Wyatt C.N. Diphenylene iodinium blocks K{+} and Ca{2+} currents in type I cells isolated from the neonatal rat carotid body // Neurosci. Lett., 1994. Vol. 172, N 1-2.-С.63-66

9.
Kusakabe Coexistence of substance P, neuropeptide Y, VIP, and CGRP in the nerve fibers of the carotid labyrinth of the bullfrog, Rana catesbeiana. A double-labelling immunofluorescence study in combination with alternate consecutive sections // Cell and Tissue Res., 1994. Vol. 276, N 1.-С.91-97

10.
Suguihara Effect of dopamine on hypoxic ventilatory response of sedated piglets with intact and denervated carotid bodies // J. Appl. Physiol., 1994. Vol. 77, N 1.-С.285-289

11.
Suguihara Effect of dopamine on hypoxic ventilatory response of sedated piglets with intact and denervated carotid bodies // J. Appl. Physiol., 1994. Vol. 77, N 1.-С.285-289

12.
Suguihara Effect of dopamine on hypoxic ventilatory response of sedated piglets with intact and denervated carotid bodies // J. Appl. Physiol., 1994. Vol. 77, N 1.-С.285-289

13.
Potentiometric determination of carbonic anhydrase activity in rabbit carotid bodies: Comparison among normoxic, hyperoxic and hypoxic animals // Neurosci. Lett., 1994. Vol. 166, N 1.-С.126-130

14.
Sun Dopamine or transmitter release from rat carotid body may not be essential to hypoxic chemoreception // Amer. J. Physiol., 1994. Vol. 267, N 6.-С.R1632-R1639

15.
Pepper D.R. Postnatal development of CO[2]-O[2] interaction in the rat carotid body in vitro // J. Physiol., 1995. Vol. 485, N 2.-С.531-541

16.
Pepper D.R. Effects of CO[2] upon hypoxic chemosensitivity in the neonatal and adult rat carotid body, in vitro // J. Physiol., 1994. Vol. 479, Suppl.:proc..-С.22

17.
Effects of carotid body sympathetic denervation on ventilatory acclimatization to hypoxia in the goat // Respir. Physiol., 1995. Vol. 99, N 2.-С.215-224

18.
Effects of carotid body sympathetic denervation on ventilatory acclimatization to hypoxia in the goat // Respir. Physiol., 1995. Vol. 99, N 2.-С.215-224

19.
Doyle Thomas P. Effects of Na{+} and K{+} channel blockade on baseline and anoxia-induced catecholamine release from rat carotid body // J. Appl. Physiol., 1994. Vol. 77, N 6.-С.2606-2611

20.
Pepper D.R. Effect of K{+} upon hypoxic chemosensitivity in the neonatal and adult rat carotid body, in vitro // J. Physiol. Proc., 1995, N 483.-С.91p-92

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