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  1. Age peculiarities of skin perfusion in different parts of anterior abdominal wall based on laser doppler flowmetry data
  2. Capabilities of portable laser analyzers in assessing the state of microcirculation and its regulatory mechanisms
  3. Modern view on the role of pericytes in the microcirculation
  4. Hydrogen sulfide in the cardiovascular system: A small molecule with promising therapeutic potential
  5. Effect of sodium nitroprusside on the microrheological properties of red blood cells in different media
  6. The structure of the relationship between indicators of aerobic performance, central hemodynamics, microcirculation and hemorheology
  7. Hydrogen Sulfide in the Cardiovascular System: A Small Molecule with Promising Therapeutic Potential
  8. Effect of hydrogen sulfide gas transmitter on the microrheological properties of erythrocytes in healthy persons and patients with diabetes mellitus type 2
  9. Effects of Gasotransmitters on Membrane Elasticity and Microrheology of Erythrocytes
  10. Cellular models of erythrocytes for studying the effect of gasotransmitters on their microrheology
  11. Interrelations of Hemorheological Parameters and Microcirculation in Subjects with an Increased Blood Pressure
  12. Microcirculation and blood rheology abnormalities in chronic heart failure
  13. Interrelation of blood coagulation and hemorheology in cancer
  14. Aggregation of erythrocytes and their membranes flexibility in patients with cancer-associated anemia: Mechanisms of changes under the influence of epoetin alfa
  15. Alteration of red blood cell microrheology by anti-tumor chemotherapy drugs
  16. Агрегация эритроцитов и их мембранная эластичность у больных анемией злокачественных новообразований: механизмы изменений под влиянием эпоэтина альфа
  17. Red blood cell microrheological changes and drug transport efficiency
  18. Role of intracellular signaling systems in regulation of erythrocyte microrheology
  19. Роль внутриклеточных сигнальных систем в изменениях микрореологических свойств эритроцитов
  20. Signaling pathways regulating red blood cell aggregation
  21. Role molecular signaling pathways in changes of red blood cell deformability
  22. Changes in Electrokinetic Properties of Erythrocytes under the Influence of Pentoxifylline and New Hemorheologically Active Substances
  23. Role of protein kinases of human red cell membrane in deformability and aggregation changes
  24. Role Ca2+ in Mechanisms of the Red Blood Cells Microrheological Changes
  25. Estimation of the microcirculation state in cerebrovascular disorders using laser doppler flowmetry data and hemorheological parameters
  26. Macro- and microrheological parameters of blood in patients with cerebral and peripheral atherosclerosis: The molecular change mechanisms after pentoxifylline treatment
  27. Microcirculation and blood rheology in patients with cerebrovascular disorders
  28. The role of red blood cell adenylyl cyclase activation in changes of erythrocyte membrane microrheological properties
  29. Parameters of Microcirculation in Paired Formations after Single Aspirin Administration: Laser Doppler Flowmetry Data
  30. Red blood cell aggregation changes are depended on its initial value: Effect of long-term drug treatment and short-term cell incubation with drug
  31. Crosstalk between adenylyl cyclase signaling pathway and Ca 2+ regulatory mechanism under red blood cell microrheological changes
  32. Extra- and intracellular signaling pathways under red blood cell aggregation and deformability changes
  33. Correlation between electrophoretic mobility and extent of aggregation of human red blood cells