摘要
articleRheology of bloodE. W. ErrillE. W. ErrillPublished Online:01 Oct 1969https://doi.org/10.1152/physrev.1969.49.4.863MoreSectionsPDF (4 MB)Download PDF ToolsExport citationAdd to favoritesGet permissionsTrack citations ShareShare onFacebookTwitterLinkedInWeChat Previous Back to Top Next Download PDF FiguresReferencesRelatedInformation Cited ByA Predictive Model of Thrombus Growth in Stenosed Vessels with Dynamic Geometries31 July 2018 | Journal of Medical and Biological Engineering, Vol. 39, No. 4Viscosity15 September 2018Significantly increased low shear rate viscosity, blood elastic modulus, and RBC aggregation in adults following cardiac surgery8 May 2018 | Scientific Reports, Vol. 8, No. 1Isolation of cells from whole blood using shear-induced diffusion20 June 2018 | Scientific Reports, Vol. 8, No. 1Role of a structural parameter in modelling blood flow through a tapering channel29 May 2018 | Boundary Value Problems, Vol. 2018, No. 1No-reflow phenomenon in the heart and brainRobert A. Kloner, Kevin S. 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Casson theoryMicrovascular Research, Vol. 4, No. 1Evaluation of viscous and inertial pressure losses in isolated tissue with a simple mathematical modelMicrovascular Research, Vol. 4, No. 1Viscous properties of muskox bloodComparative Biochemistry and Physiology Part A: Physiology, Vol. 39, No. 4Effects of Reduced Hematocrit on Erythrocyte Velocity and Fluorescein Transit Time in the Cerebral Microcirculation of the MouseCirculation Research, Vol. 29, No. 1The influence of an industrial surfactant pluronic F-68, in the treatment of hemorrhagic shockJournal of Surgical Research, Vol. 11, No. 4Arterial elasticity and fluid dynamicsProgress in Biophysics and Molecular Biology, Vol. 22Effect of Hematocrit and Inertial Losses on Pressure-Flow Relations in the Isolated Hindpaw of the DogCirculation Research, Vol. 27, No. 6The differential effect of elevated blood viscosity on plasma and erythrocyte flow in the cerebral microcirculation of the mouseMicrovascular Research, Vol. 2, No. 4The rheology of red blood cell aggregatesMicrovascular Research, Vol. 2, No. 3Finite element mathematical model of fluid and solute transport in hemofiltration membranes More from this issue > Volume 49Issue 4October 1969Pages 863-888 Copyright & PermissionsCopyright © 1969 the American Physiological Societyhttps://doi.org/10.1152/physrev.1969.49.4.863PubMed4898603History Published online 1 October 1969 Published in print 1 October 1969 Metrics