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Blood rheology in arterial hypertension
Journal of Hypertension, 1992DETERMINANTS OF BLOOD RHEOLOGY: Blood flow depends on driving pressure and a resistance factor, the latter being related to geometrical hindrance and to the intrinsic viscosity of the blood. Since whole blood is non-Newtonian in nature, blood viscosity is strongly dependent on shear conditions.
F, Zannad, J F, Stoltz
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The role of slip in the rheology of blood
Biorheology, 1973The use of slip as a mechanism in explaining the predicting blood flow is shown to lead to inconsistent results when the over-all rheological properties as well as the velocity profile is considered. The evidence for slip is also considered and shown not to be a proper interpretation of observed characteristics of red blood cell motion.
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Physiological significance of blood rheology
Biorheology, 1982The apparent viscosity (η) of blood is determined by plasma viscosity, hematocrit (Hct), cell deformation and cell aggregation. The optimum Hct for oxygen transport varies with shear conditions and shows regional differences. In circulation in vivo, the complex geometry causes inertial, in addition to viscous, losses.
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Blood Rheology in Emergency Medicine
Seminars in Thrombosis and Hemostasis, 1996Emergency conditions are generally associated with changes in blood rheology due to a systemic "acute-phase" reaction occurring within hours of the acute event. The acute-phase reaction includes changes in plasma protein patterns as well as in red cell properties.
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Model of blood rheology including hemolysis based on population balance
Communications in Nonlinear Science and Numerical Simulation, 2023Wojciech Orciuch +2 more
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Technological Advances in Blood Rheology
Critical Reviews in Clinical Laboratory Sciences, 1990Gérard Nash, John Stuart, G B Nash
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