Red cell distribution at microvascular bifurcations.
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[1] Haematocrit distribution in rabbit tenuissimus muscle. , 1988, Acta physiologica Scandinavica.
[2] J. Jacquez. Microvascular networks: experimental and theoretical studies : A. S. Popel and P. C. Johnson (Editors) Karger, Basel, 1986, 226 pp., $110.00 , 1987 .
[3] W. Olbricht,et al. The motion of model cells at capillary bifurcations. , 1987, Microvascular research.
[4] C. Desjardins,et al. Microvessel hematocrit: measurement and implications for capillary oxygen transport. , 1987, The American journal of physiology.
[5] A. Pries,et al. A versatile intravital microscope design. , 1987, International journal of microcirculation, clinical and experimental.
[6] A. Pries,et al. Generalization of the Fahraeus principle for microvessel networks. , 1986, The American journal of physiology.
[7] J. Perkkiö,et al. Theoretical model of phase separation of erythrocytes, platelets, and plasma at branches. , 1986, Medical physics.
[8] M. L. Ellsworth,et al. Estimation of red cell flow microvessels: consequences of the Baker-Wayland spatial averaging model. , 1986, Microvascular research.
[9] A. Pries,et al. Topological structure of rat mesenteric microvessel networks. , 1986, Microvascular research.
[10] G. Cokelet. Blood Flow through Arterial Microvascular Bifurcations , 1986 .
[11] B Dawant,et al. Effect of dispersion of vessel diameters and lengths in stochastic networks. I. Modeling of microcirculatory flow. , 1986, Microvascular research.
[12] G. Schmid-Schönbein,et al. Model studies on distributions of blood cells at microvascular bifurcations. , 1985, The American journal of physiology.
[13] B. Fenton,et al. Nonuniform red cell distribution in 20 to 100 μm bifurcations , 1985 .
[14] Microphotometric determination of hematocrit in small vessels. , 1983, The American journal of physiology.
[15] P. Canham,et al. Ratio of cells and plasma in blood flowing past branches in small plastic channels. , 1983, The American journal of physiology.
[16] J. Perkkiö,et al. Hematocrit reduction in bifurcations due to plasma skimming. , 1983, Bulletin of mathematical biology.
[17] P. Johnson,et al. Capillary network geometry and red cell distribution in hamster cremaster muscle. , 1982, The American journal of physiology.
[18] Flow conditions of red cells and plasma in microvascular bifurcations. , 1982, Biorheology.
[19] A. Pries,et al. Analysis of the hematocrit distribution in the mesenteric microcirculation. , 1982, International journal of microcirculation, clinical and experimental.
[20] B. Duling,et al. Microvascular adaptations during maturation of striated muscle. , 1981, The American journal of physiology.
[21] K Aukland,et al. Skimming of microspheres in vitro: implications for measurement of intrarenal blood flow. , 1981, The American journal of physiology.
[22] A. Pries,et al. MICROVASCULAR DISTRIBUTION OF BLOOD VOLUME FLOW AND HEMATOCRIT AS RELATED TO OXYGEN DELIVERY , 1981 .
[23] A. Pries,et al. Model studies on phase separation at a capillary orifice. , 1981, Biorheology.
[24] S Chien,et al. In vivo measurements of "apparent viscosity" and microvessel hematocrit in the mesentery of the cat. , 1980, Microvascular research.
[25] R. Skalak,et al. Cell distribution in capillary networks. , 1980, Microvascular research.
[26] P. Gaehtgens,et al. Flow of blood through narrow capillaries: rheological mechanisms determining capillary hematocrit and apparent viscosity. , 1980, Biorheology.
[27] B. Duling,et al. Microvascular hematocrit and red cell flow in resting and contracting striated muscle. , 1979, The American journal of physiology.
[28] Y. Fung,et al. Effect of velocity of distribution on red cell distribution in capillary blood vessels. , 1978, The American journal of physiology.
[29] H. Goldsmith,et al. Particle behavior in flow through small bifurcations. , 1977, Microvascular research.
[30] Y. Fung,et al. Inversion of Fahraeus effect and effect of mainstream flow on capillary hematocrit. , 1977, Journal of applied physiology: respiratory, environmental and exercise physiology.
[31] Blood flow in branching vessels. , 1976, Journal of applied physiology.
[32] B. Zweifach,et al. RBC velocity profiles in arterioles and venules of the rabbit omentum. , 1975, Microvascular research.
[33] M. Baker,et al. On-line volume flow rate and velocity profile measurement for blood in microvessels. , 1974, Microvascular research.
[34] Etude théorique et expérimentale du concept de zone d’influence à une bifurcation du lit vasculaire , 1973 .
[35] [Theoretical and experimental study of the concept of zone of influence at a bifurcation of the vascular bed]. , 1973, Angiologica.
[36] P. Johnson. Red cell separation in the mesenteric capillary network. , 1971, The American journal of physiology.
[37] J. H. Dial,et al. Influence of flow variations on capillary hematocrit in mesentery. , 1971, The American journal of physiology.
[38] O. Lundgren,et al. Plasma skimming in the intestinal tract. , 1970, Acta physiologica Scandinavica.
[39] M. Deakin,et al. Flow at the Junction of Two Pipes: the Shape of the Separation Surface , 1970, Nature.
[40] G. Bugliarello,et al. Velocity distribution and other characteristics of steady and pulsatile blood flow in fine glass tubes. , 1970, Biorheology.
[41] Influence of absolute flow rate and rouleau formation on plasma skimming in vitro. , 1969, The American journal of physiology.
[42] K. Svanes,et al. Variations in small blood vessel hematocrits produced in hypothermic rats by micro-occlusion , 1968 .
[43] Palmer Aa. Axial drift of cells and partial plasma skimming in blood flowing through glass slits , 1965 .
[44] G. Bugliarello,et al. The mechanism of phase separation at bifurcations. An introduction to the problem in the microcirculatory system. , 1965, Bibliotheca anatomica.
[45] G. Hsiao,et al. Phase Separation in Suspensions Flowing through Bifurcations: A Simplified Hemodynamic Model , 1964, Science.
[46] A. Copley,et al. Hæmorheological studies on the plasmatic zone in the microcirculation of the cheek pouch of Chinese and Syrian hamsters1 , 1962 .
[47] J. Berkson. A Statistically Precise and Relatively Simple Method of Estimating the Bio-Assay with Quantal Response, Based on the Logistic Function , 1953 .
[48] A. Krogh,et al. Studies on the physiology of capillaries , 1922 .
[49] A. Krogh. Studies on the physiology of capillaries , 1921, The Journal of physiology.