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Kardiologiia|December 1, 1982
[Transport of calcium and distribution of calmodulin in the erythrocytes in primary arterial hypertension]Iu V Postnov, S N Orlov, N I Pokudin, et al.Biofizika|January 1, 1985
[Study of the structure of erythrocyte membrane in spontaneous genetic hypertension using the spin-label method]P V Gulak, S N Orlov, Iu V Postnov, et al.Biulleten' Vsesoiuznogo Kardiologicheskogo Nauchnogo Tsentra AMN SSSR|January 1, 1984
[Physico-chemical properties of the erythrocyte membranes of normotensive and spontaneously hypertensive rats]P V Gulak, S N Orlov, V L Shnyrov, et al.Kardiologiia|September 16, 2008
[Mitochondrial energy conversion disturbance with decrease in ATP production as a source of systemic arterial hypertension]Iu V Postnov, S N Orlov, E Iu Budnikov, et al.Kardiologiia|December 1, 1979
[Kidney in chronic arterial hypertension: "resetting" and the role of the renal medulla in its development]Iu V PostnovFiziologicheskii Zhurnal SSSR Imeni I. M. Sechenova|November 1, 1988
[Development of the membrane concept of the pathogenesis of primary arterial hypertension]Iu V PostnovArkhiv Patologii|July 17, 2001
[The role of mitochondrial calcium overload and energy deficiency in pathogenesis of arterial hypertension]Iu V PostnovKardiologiia|January 1, 1993
[Primary hypertension--cellular resetting and kidney shifting]Iu V PostnovKardiologiia|November 1, 1987
[Membrane defect in primary arterial hypertension: a reflection of dysfunction of cellular oncogenes?]Iu V PostnovKardiologiia|June 24, 2004
[On the role of insufficient mitochondrial energy production in primary hypertension: the neurogenic constitutive of the pathogenesis]Iu V PostnovPageof 28