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1.
Altered calcium regulation in the cardiac plasma membrane in experimental renal hypertension // J. Mol. and Cell. Cardiol., 1988. Vol. 20, N 7.-С.625-634

2.
Are Ba{2}+ and Sr{2}+ ions transported by the Na+-Ca{2}+ exchanger in frog artial cells? // J. Mol. and Cell Cardiol., 1989. Vol. 21, N 9.-С.865-875

3.
Benndorf K. Reoxygenation-induced arrhythmogenic transient inward currents in isolated cells of the guinea-pig heart // Pflugers Arch., 1991. Vol. 418, N 3.-С.248-260

4.
Benuck Evidence for the involvement of Na+/Ca{2}+ exchange in the stimulation of inositol phospholipid hydrolysis by sodium channel activation and depolarization // Eur. J. Pharmacol., 1989. Vol. 159, N 2.-С.187-190

5.
Beuckelmann D.J. Sodium-calcium excance in guinea-pig cardiac cells: exchange current and changes in intracellular Ca{2}+ // J. Physiol., 1989. Vol. 414.-С.499-520

6.
Beuckelmann D.J. [Ga{2}][i]-transients arising from sodium-calcium exchange (Na-Ca) in guinea-pig myocytes increase exponentially with depolarization // J. Physiol., 1988. Vol. 407/2.-С.78Р

7.
Bjornsson O.G. Evidence for an effective Na{+}/Са{2}{+} exchange across the sarcolemma of isolated rat cardiac ventricular myocytes at nanomolar conc. of cytosolic free calcium // Eur. J. Clin. Invest., 1992. Vol. 22, N 4.-С.7

8.
Bouchard R.A. Regulation of unloaded cell shortening by sarcolemmal sodium-calcium exchange in isolated rat ventricular myocytes // J. Physiol., 1993, N 469.-С.583-599

9.
Boyett M.R. Paired pulse potentiation in isolated ferret ventricular muscle // J. Physiol., 1989. Vol. 410.-С.Р66

10.
Bridge John H.B. The relationship between charge movements associated with I and Iin cardiac myocytes // Science, 1990. Vol. 248, N 4953.-С.376-378

11.
Caputo Currents related to the sodiumcalcium exchange in squid giant axon // Biochim. et biophys. acta. Biomembranes., 1989. Vol. 986, N 2.-С.250-256

12.
Ca{2}{+} transport in myocardial sarcolemma from rainbow trout // Amer. J. Physiol., 1990. Vol. 259, N 3.-С.R453-R460

13.
Chatamra K.R. The effects of sodium-calcium exchange inhibitors on protein loss associated with the calcium paradox of the isolated Langendorff perfused guinea-pig heart // Exp. Physiol., 1996. Vol. 81, N 2.-С.203-210

14.
Coetzee William A. Oxidant stress inhibits Na-Ca-exchange current in cardiac myocytes: mediation by sulfhydryl groups? // Amer. J. Physiol., 1994. Vol. 266, N 3.-С.Н909-Н919

15.
Condrescu Na+-Ca{2}+ exchange in squid optic nerve membrane vesicles is activated by internal calcium // Biochim. et biophys. acta. M., 1988. Vol. 946, N 2.-С.289-298

16.
Contraction-related variations of slow inward current components in mammalian ventricular muscle // Arch. int. physiol., biochim. et biophys., 1991. Vol. 99, N 5.-С.А161

17.
Cooper P.J. Reverse-mode Na{+}-Ca{+} exchange induces sarcoplasmic reticular Ca{2+} release and potentiated metabolism of the K{+}-arrested rat heart // Proc. Austral. Physiol. and Pharmacol. Soc., 1997. Vol. 28, N 2.-С.5

18.
Crespo Lynn M. Kinetics, stoichiometry and role of the Na-Ca exchange mechanism in isolated cardiac myocytes // Nature, 1990. Vol. 345, N 6276.-С.618-621

19.
Depolarization-induced Ca entry via Na-Ca exchange triggers SR release in guinea pig cardiac myocytes // Amer. J. Physiol., 1994. Vol. 266, N 4.-С.Н1422-Н1433

20.
Developmental changes in the electrogenic Na{+}- Са{2}{+} exchange current density in voltage clamped, isolated rabbit ventricular myocytes // J. Physiol., 1993. Vol. 473.-С.181

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