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Titlebook: Whole Organ Approaches to Cellular Metabolism; Permeation, Cellular James B. Bassingthwaighte,John H. Linehan,Carl A. Book 1998 Springer-V

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Distribution of Intravascular and Extravascular Resistances to Oxygen Transportcapillaries, arterioles, and, to some extent, venules as being the sites of oxygen exchange (Ellsworth et al., 1994). When an oxygen molecule is released from hemoglobin, it has to traverse the red cell, blood plasma, vascular wall, interstitium, parenchymal cell plasma membrane, and the intracellular space to reach the mitochondria.
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ve A lasting tribute to the work and enthusiasm of Carl GoreThe field of capillary-tissue exchange physiology has been galvanized twice in the past 25 years. A 1969 conference at the National Academy of Sciences in Copenhagen resulted in the book Capillary Permeability: The Transfer of Mole­ cules a
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Transport Functions of the Glycocalyx, Specific Proteins, and Caveolae in Endotheliumented in this chapter. Some of the endothelial cell surface proteins involved in the structure and function of specific transendothelial transport pathways will be examined. Many studies utilizing a diversity of experimental approaches including biochemical, morphological, physiological, and theoret
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Study of Blood Capillary Permeability with the Rete Mirabileessels (10). The rete provides an efficient transfer system capable of trapping heat or chemical compounds for adaptive purposes. Heat conservation is vital for arctic animals or tropical animals that are hypersensitive to a rapidly cooling milieu. In some fast-swimming fish predators, capillary net
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Interactions Between Bovine Adrenal Medulla Endothelial and Chromaffin Cellse endothelial cells (ECs) to increase synthesis and secretion of nitric oxide (1) and prostacyclin (2). These products induce smooth muscle cell relaxation and consequently vasodilatation (3). Another EC response evoked by these substances consists on increased transvascular permeability to small so
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Endothelial Barrier Dynamics: Studies in a Cell-Column Model of the Microvasculaturelda et al., 1988; Haselton et al., 1989, 1992a, 1992b). Experimental evidence continues to accumulate in support of the hypothesis that the endothelial cell monolayer lining the intravascular space is an important determinant of normal transcapillary barrier. The majority of transendothelial solute
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