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Общее количество найденных документов : 45
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 1-20    21-40   41-45 
1.
Cell hydration in normal and hypertensive human pregnancy // Clin. and Exp. Hypertens. B., 1991. Vol. 10, N 1-2.-С.232

2.
Erythrocyte potassium alterations in elderly subjects with postural hypotension // J. Clin. and Exp. Gerantol., 1990. Vol. 12, N 3.-С.125-136

3.
Sodium-lithium countertransport kinetics in normal and hypertensive human pregnancy // Eur. J. Clin. Invest., 1992. Vol. 22, N 1.-С.50-54

4.
Erythrocyte hydration in normal human pregnancy // Brit. J. Obstet. and Gynaecol., 1991. Vol. 98, N 12.-С.1205-1211

5.
Thomas T.H. Some recent advances in plant hormone research in Europe // Annu. Bull., 1991, N 1.-С.13-20

6.
Carr S. Sodium-lithium countertransport activity and its sensitivity to inhibitors with erythrocyte ageing in man // Clin. Chim. acta, 1988. Vol. 178, N 1.-С.51-58

7.
Advani A. Impaired neutrophil store-mediated calcium entry in Type 2 diabetes // Eur. J. Clin. Invest., 2004. Vol. 34, N 1.-С.43-49

8.
Senior P.A. Abonormal thiol group modulation of sodium-lithium countertransport and membrane fluidity is associated with a disturbed relationship between serum triacylglycerols and membrane function in type II diabetes // Clin. Sci., 2000. Vol. 98, N 6.-С.673-680

9.
Advani A. Impaired neutrophil actin assembly causes persistent CD11b expression and reduced primary granule exocytosis in type II diabetes // Diabetologia, 2002. Vol. 45, N 5.-С.719-727

10.
High erythrocyte water content causes discrepancy between values of automated and micro-centrifuged haematocrit // Acta haematol., 1988. Vol. 80, N 2.-С.89-90

11.
Advani A. Increasing neutrophil F-actin corrects CDIIb exposure in type 2 diabetes // Eur. J. Clin. Invest., 2004. Vol. 34, N 5.-С.358-364

12.
Dowd A. Inhibition of sodium-lithium countertransport (SLC) by a fluorescent labelling of a sulphydral group // Clin. Sci., 1993. Vol. 85, N 1.-С.3р

13.
Thomas T.H. Sodium-lithium countertransport (SLC) kinetics are altered by a high-affinity modifier site // Clin. Sci., 1993. Vol. 85, N 1.-С.3р

14.
Rutherford P.A. The inheritance of erythrocyte sodium-lithium countertransport (SLC) kinetics in essential hypertension // Clin. Sci., 1993. Vol. 85, N 1.-С.3р

15.
Increased red cell sodium lithium countertransport activity, total exchangeable sodium, and hormonal control of sodium balance in normoalbuminuric type 1 diabetes // Diabet. Med., 1993. Vol. 10, N 9.-С.825-832

16.
Pregnancy induced hypertension and sodium pump function in erythrocytes // Brit. J. Obstet. and Gynaecol., 1992. Vol. 99, N 10.-С.803-807

17.
Rutherford P.A. The relationship between the temperature sensitivity and the kinetic characteristics of erythrocyte sodiumlithium countertransport activity (SLC) // Clin. Sci., 1993. Vol. 85, N 1.-С.3р

18.
Rutherford P.A. Erythrocyte sodium-lithium countertransport: Clinically useful, pathophysiologically instructive or just phenomenology? // Clin. Sci, 1992. Vol. 82, N 4.-С.341-352

19.
Thomas T.H. A spreadsheet approach to the economic modelling of agroforestry systems // Forest Ecol. and Manag., 1991. Vol. 45, N 1-4.-С.207-235

20.
Plasma lipids affect maximum velocity not sodium affinity of human sodium-lithium countertransport: distinction from essential hypertension // Eur. J. Clin. Invest., 1992. Vol. 22, N 11.-С.719-724

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